BL_genes.md
... ...
@@ -6,201 +6,201 @@
6 6
7 7
### *28 total*
8 8
9
-| Gene | Tier | Relevant references |
10
-|:------------------:|:-------:|:--------------------------------------------------------------------------------:|
11
-| [ARID1A](ARID1A) | 1 | Krysiak et al. 2017; Love et al. 2012; Zhang et al. 2013 |
12
-| [BMP7](BMP7) | 1 | Panea et al. 2019 |
13
-| [CCND3](CCND3) | 1 | Morin et al. 2011; Richter et al. 2012 |
14
-| [CHD8](CHD8) | 1 | Reddy et al. 2017; Grande et al. 2019 |
15
-| [DDX3X](DDX3X) | 1 | Schmitz et al. 2012, 2018 |
16
-| [EIF4A1](EIF4A1) | 1 | Panea et al. 2019 |
17
-| [EPPK1](EPPK1) | 1 | Panea et al. 2019 |
18
-| [FBXO11](FBXO11) | 1 | Richter et al. 2012; Hübschmann et al. 2021 |
19
-| [FOXO1](FOXO1) | 1 | Schmitz et al. 2012; Morin et al. 2011 |
20
-| [GNA13](GNA13) | 1 | Morin et al. 2011; Love et al. 2012 |
21
-| [GNAI2](GNAI2) | 1 | Grande et al. 2019; Morin et al. 2013 |
22
-| [HNRNPU](HNRNPU) | 1, aSHM | Panea et al. 2019; Reddy et al. 2017 |
23
-| [ID3](ID3) | 1 | Schmitz et al. 2012; Richter et al. 2012 |
24
-| [KMT2D](KMT2D) | 1 | Grande et al. 2019; Beà et al. 2013; Morin et al. 2011 |
25
-| [MYC](MYC) | 1, aSHM | Johnston and Carroll 1992; L. Pasqualucci et al. 2001 |
26
-| [P2RY8](P2RY8) | 1 | Lohr et al. 2012; Muppidi et al. 2014 |
27
-| [PHF6](PHF6) | 1 | Thomas et al. 2023; Reddy et al. 2017 |
28
-| [PTEN](PTEN) | 1 | Love et al. 2012 |
29
-| [RFX7](RFX7) | 1 | Grande et al. 2019 |
30
-| [RHOA](RHOA) | 1 | Richter et al. 2012 |
31
-| [SIN3A](SIN3A) | 1 | Grande et al. 2019 |
32
-| [SMARCA4](SMARCA4) | 1 | Zhang et al. 2013; Nadeu et al. 2020; Krysiak et al. 2017; Richter et al. 2012 |
33
-| [TCF3](TCF3) | 1 | Schmitz et al. 2012 |
34
-| [TCL1A](TCL1A) | 1 | Grande et al. 2019 |
35
-| [TFAP4](TFAP4) | 1 | Grande et al. 2019 |
36
-| [TP53](TP53) | 1 | Beà et al. 2013; Morin et al. 2011; Wilda et al. 2004 |
37
-| [USP7](USP7) | 1 | Grande et al. 2019 |
38
-| [WNK1](WNK1) | 1 | Hübschmann et al. 2021; Thomas et al. 2023 |
9
+| Gene | Tier | Relevant references |
10
+|:------------------:|:-------:|:---------------------------------------------------------------------------------|
11
+| [ARID1A](ARID1A) | 1 | Love et al. 2012; Krysiak et al. 2017; Zhang et al. 2013 |
12
+| [BMP7](BMP7) | 1 | Panea et al. 2019 |
13
+| [CCND3](CCND3) | 1 | Richter et al. 2012; Morin et al. 2011 |
14
+| [CHD8](CHD8) | 1 | Grande et al. 2019; Reddy et al. 2017 |
15
+| [DDX3X](DDX3X) | 1 | Schmitz et al. 2018, 2012 |
16
+| [EIF4A1](EIF4A1) | 1 | Panea et al. 2019 |
17
+| [EPPK1](EPPK1) | 1 | Panea et al. 2019 |
18
+| [FBXO11](FBXO11) | 1 | Richter et al. 2012; Hübschmann et al. 2021 |
19
+| [FOXO1](FOXO1) | 1 | Schmitz et al. 2012; Morin et al. 2011 |
20
+| [GNA13](GNA13) | 1 | Morin et al. 2011; Love et al. 2012 |
21
+| [GNAI2](GNAI2) | 1 | Morin et al. 2013; Grande et al. 2019 |
22
+| [HNRNPU](HNRNPU) | 1, aSHM | Reddy et al. 2017; Panea et al. 2019 |
23
+| [ID3](ID3) | 1 | Richter et al. 2012; Schmitz et al. 2012 |
24
+| [KMT2D](KMT2D) | 1 | Morin et al. 2011; Grande et al. 2019; Beà et al. 2013 |
25
+| [MYC](MYC) | 1, aSHM | L. Pasqualucci et al. 2001; Johnston and Carroll 1992 |
26
+| [P2RY8](P2RY8) | 1 | Muppidi et al. 2014; Lohr et al. 2012 |
27
+| [PHF6](PHF6) | 1 | Reddy et al. 2017; Thomas et al. 2023 |
28
+| [PTEN](PTEN) | 1 | Love et al. 2012 |
29
+| [RFX7](RFX7) | 1 | Grande et al. 2019 |
30
+| [RHOA](RHOA) | 1 | Richter et al. 2012 |
31
+| [SIN3A](SIN3A) | 1 | Grande et al. 2019 |
32
+| [SMARCA4](SMARCA4) | 1 | Zhang et al. 2013; Krysiak et al. 2017; Nadeu et al. 2020; Richter et al. 2012 |
33
+| [TCF3](TCF3) | 1 | Schmitz et al. 2012 |
34
+| [TCL1A](TCL1A) | 1 | Grande et al. 2019 |
35
+| [TFAP4](TFAP4) | 1 | Grande et al. 2019 |
36
+| [TP53](TP53) | 1 | Beà et al. 2013; Morin et al. 2011; Wilda et al. 2004 |
37
+| [USP7](USP7) | 1 | Grande et al. 2019 |
38
+| [WNK1](WNK1) | 1 | Thomas et al. 2023; Hübschmann et al. 2021 |
39 39
40 40
## Tier 2 BL genes
41 41
42 42
### *158 total*
43 43
44
-| Gene | Tier | Relevant references |
45
-|:----------------------:|:-------:|:-----------------------------------------------------------------------------:|
46
-| [ACAD9](ACAD9) | 2 | Love et al. 2012 |
47
-| [ACE](ACE) | 2 | Love et al. 2012 |
48
-| [ADAMTS5](ADAMTS5) | 2 | Burkhardt et al. 2022 |
49
-| [ADNP](ADNP) | 2 | Burkhardt et al. 2022 |
50
-| [AGO4](AGO4) | 2 | Burkhardt et al. 2022 |
51
-| [ALPK2](ALPK2) | 2 | Panea et al. 2019 |
52
-| [ARHGEF1](ARHGEF1) | 2 | Muppidi et al. 2014 |
53
-| [ATP2C2](ATP2C2) | 2 | Love et al. 2012 |
54
-| [BACH2](BACH2) | 2, aSHM | Grande et al. 2019 |
55
-| [BCL2](BCL2) | 2, aSHM | Tanaka et al. 1992; Morin et al. 2011; Burkhardt et al. 2022 |
56
-| [BCL6](BCL6) | 2, aSHM | Love et al. 2012; Morin et al. 2011 |
57
-| [BCL7A](BCL7A) | 2, aSHM | Grande et al. 2019; Krysiak et al. 2017; Arthur et al. 2018 |
58
-| [BRAF](BRAF) | 2 | Tiacci et al. 2011; Love et al. 2012 |
59
-| [BRD4](BRD4) | 2 | Love et al. 2012 |
60
-| [BTG1](BTG1) | 2, aSHM | Burkhardt et al. 2022; Morin et al. 2011 |
61
-| [BTG2](BTG2) | 2, aSHM | Love et al. 2012; Morin et al. 2011 |
62
-| [C16orf48](C16orf48) | 2 | Schmitz et al. 2012 |
63
-| [C6orf27](C6orf27) | 2 | Love et al. 2012 |
64
-| [CAD](CAD) | 2 | Love et al. 2012 |
65
-| [CARD11](CARD11) | 2 | Wu et al. 2016; Morin et al. 2011; Lenz et al. 2008; Panea et al. 2019 |
66
-| [CARD4](CARD4) | 2 | Love et al. 2012 |
67
-| [CCNF](CCNF) | 2 | Abate et al. 2015 |
68
-| [CCT6B](CCT6B) | 2 | Love et al. 2012 |
69
-| [CD79A](CD79A) | 2 | Burkhardt et al. 2022 |
70
-| [CD79B](CD79B) | 2 | Morin et al. 2011; Panea et al. 2019 |
71
-| [CD83](CD83) | 2, aSHM | Russler-Germain et al. 2023; Panea et al. 2019; Morin et al. 2013 |
72
-| [CDC73](CDC73) | 2 | Love et al. 2012; Reddy et al. 2017 |
73
-| [CDH17](CDH17) | 2 | Love et al. 2012 |
74
-| [CDKN2A](CDKN2A) | 2 | Grande et al. 2019; Morin et al. 2013 |
75
-| [CDKN2C](CDKN2C) | 2 | Thomas et al. 2023 |
76
-| [CHD4](CHD4) | 2 | Burkhardt et al. 2022 |
77
-| [COL4A2](COL4A2) | 2 | Love et al. 2012 |
78
-| [CPXM2](CPXM2) | 2 | Burkhardt et al. 2022 |
79
-| [CREBBP](CREBBP) | 2 | Laura Pasqualucci, Dominguez-Sola, et al. 2011; Love et al. 2012 |
80
-| [CTCF](CTCF) | 2 | Panea et al. 2019 |
81
-| [CXCR4](CXCR4) | 2, aSHM | Krysiak et al. 2017; Khodabakhshi et al. 2012; Panea et al. 2019 |
82
-| [CYB5D1](CYB5D1) | 2 | Love et al. 2012 |
83
-| [CYP4F22](CYP4F22) | 2 | Love et al. 2012 |
84
-| [DHCR7](DHCR7) | 2 | Schmitz et al. 2012 |
85
-| [DLGAP1](DLGAP1) | 2 | Love et al. 2012 |
86
-| [DNMT1](DNMT1) | 2 | Panea et al. 2019 |
87
-| [DTX1](DTX1) | 2, aSHM | Schmitz et al. 2018; Panea et al. 2019 |
88
-| [E2F2](E2F2) | 2 | Burkhardt et al. 2022 |
89
-| [EBF1](EBF1) | 2, aSHM | Bohle et al. 2013; Thomas et al. 2023 |
90
-| [EDNRB](EDNRB) | 2 | Burkhardt et al. 2022 |
91
-| [EHD1](EHD1) | 2 | Thomas et al. 2023 |
92
-| [EIF2C4](EIF2C4) | 2 | Love et al. 2012 |
93
-| [ELP2](ELP2) | 2 | Schmitz et al. 2012 |
94
-| [EML2](EML2) | 2 | Love et al. 2012 |
95
-| [ENTPD3](ENTPD3) | 2 | Love et al. 2012 |
96
-| [EP300](EP300) | 2 | Laura Pasqualucci, Dominguez-Sola, et al. 2011; Panea et al. 2019 |
97
-| [EPHB2](EPHB2) | 2 | Love et al. 2012 |
98
-| [ERAP1](ERAP1) | 2 | Burkhardt et al. 2022 |
99
-| [ETS1](ETS1) | 2, aSHM | Morin et al. 2011; Panea et al. 2019 |
100
-| [EXOSC6](EXOSC6) | 2 | Schmitz et al. 2012 |
101
-| [EZH2](EZH2) | 2 | Morin et al. 2010; Love et al. 2012 |
102
-| [FAM129B](FAM129B) | 2 | Love et al. 2012 |
103
-| [FGFR3](FGFR3) | 2 | Love et al. 2012 |
104
-| [FLYWCH1](FLYWCH1) | 2 | Schmitz et al. 2012 |
105
-| [FTCD](FTCD) | 2 | Love et al. 2012 |
106
-| [FZD3](FZD3) | 2 | Panea et al. 2019 |
107
-| [GGTLA4](GGTLA4) | 2 | Love et al. 2012 |
108
-| [GRB2](GRB2) | 2 | Panea et al. 2019; Laura Pasqualucci, Trifonov, et al. 2011 |
109
-| [GRIK5](GRIK5) | 2 | Love et al. 2012 |
110
-| [GTSE1](GTSE1) | 2 | Schmitz et al. 2012 |
111
-| [HIST1H1C](HIST1H1C) | 2, aSHM | Morin et al. 2011; Panea et al. 2019 |
112
-| [HIST1H1E](HIST1H1E) | 2, aSHM | Morin et al. 2013; Grande et al. 2019; Krysiak et al. 2017 |
113
-| [HIST1H2AG](HIST1H2AG) | 2, aSHM | Krysiak et al. 2017; Morin et al. 2013; Panea et al. 2019 |
114
-| [HIST1H2AM](HIST1H2AM) | 2, aSHM | Krysiak et al. 2017; Panea et al. 2019 |
115
-| [HIST1H2BK](HIST1H2BK) | 2, aSHM | Panea et al. 2019 |
116
-| [HIST1H3D](HIST1H3D) | 2, aSHM | Panea et al. 2019 |
117
-| [HIST1H3H](HIST1H3H) | 2, aSHM | Panea et al. 2019 |
118
-| [HIST1H3I](HIST1H3I) | 2, aSHM | Krysiak et al. 2017; Panea et al. 2019 |
119
-| [HIST1H3J](HIST1H3J) | 2, aSHM | Panea et al. 2019 |
120
-| [HIST1H4J](HIST1H4J) | 2, aSHM | Panea et al. 2019 |
44
+| Gene | Tier | Relevant references |
45
+|:----------------------:|:-------:|:------------------------------------------------------------------------------|
46
+| [ACAD9](ACAD9) | 2 | Love et al. 2012 |
47
+| [ACE](ACE) | 2 | Love et al. 2012 |
48
+| [ADAMTS5](ADAMTS5) | 2 | Burkhardt et al. 2022 |
49
+| [ADNP](ADNP) | 2 | Burkhardt et al. 2022 |
50
+| [AGO4](AGO4) | 2 | Burkhardt et al. 2022 |
51
+| [ALPK2](ALPK2) | 2 | Panea et al. 2019 |
52
+| [ARHGEF1](ARHGEF1) | 2 | Muppidi et al. 2014 |
53
+| [ATP2C2](ATP2C2) | 2 | Love et al. 2012 |
54
+| [BACH2](BACH2) | 2, aSHM | Grande et al. 2019 |
55
+| [BCL2](BCL2) | 2, aSHM | Morin et al. 2011; Burkhardt et al. 2022; Tanaka et al. 1992 |
56
+| [BCL6](BCL6) | 2, aSHM | Love et al. 2012; Morin et al. 2011 |
57
+| [BCL7A](BCL7A) | 2, aSHM | Grande et al. 2019; Krysiak et al. 2017; Arthur et al. 2018 |
58
+| [BRAF](BRAF) | 2 | Love et al. 2012; Tiacci et al. 2011 |
59
+| [BRD4](BRD4) | 2 | Love et al. 2012 |
60
+| [BTG1](BTG1) | 2, aSHM | Burkhardt et al. 2022; Morin et al. 2011 |
61
+| [BTG2](BTG2) | 2, aSHM | Love et al. 2012; Morin et al. 2011 |
62
+| [C16orf48](C16orf48) | 2 | Schmitz et al. 2012 |
63
+| [C6orf27](C6orf27) | 2 | Love et al. 2012 |
64
+| [CAD](CAD) | 2 | Love et al. 2012 |
65
+| [CARD11](CARD11) | 2 | Wu et al. 2016; Morin et al. 2011; Lenz et al. 2008; Panea et al. 2019 |
66
+| [CARD4](CARD4) | 2 | Love et al. 2012 |
67
+| [CCNF](CCNF) | 2 | Abate et al. 2015 |
68
+| [CCT6B](CCT6B) | 2 | Love et al. 2012 |
69
+| [CD79A](CD79A) | 2 | Burkhardt et al. 2022 |
70
+| [CD79B](CD79B) | 2 | Panea et al. 2019; Morin et al. 2011 |
71
+| [CD83](CD83) | 2, aSHM | Panea et al. 2019; Morin et al. 2013; Russler-Germain et al. 2023 |
72
+| [CDC73](CDC73) | 2 | Reddy et al. 2017; Love et al. 2012 |
73
+| [CDH17](CDH17) | 2 | Love et al. 2012 |
74
+| [CDKN2A](CDKN2A) | 2 | Morin et al. 2013; Grande et al. 2019 |
75
+| [CDKN2C](CDKN2C) | 2 | Thomas et al. 2023 |
76
+| [CHD4](CHD4) | 2 | Burkhardt et al. 2022 |
77
+| [COL4A2](COL4A2) | 2 | Love et al. 2012 |
78
+| [CPXM2](CPXM2) | 2 | Burkhardt et al. 2022 |
79
+| [CREBBP](CREBBP) | 2 | Laura Pasqualucci, Dominguez-Sola, et al. 2011; Love et al. 2012 |
80
+| [CTCF](CTCF) | 2 | Panea et al. 2019 |
81
+| [CXCR4](CXCR4) | 2, aSHM | Panea et al. 2019; Krysiak et al. 2017; Khodabakhshi et al. 2012 |
82
+| [CYB5D1](CYB5D1) | 2 | Love et al. 2012 |
83
+| [CYP4F22](CYP4F22) | 2 | Love et al. 2012 |
84
+| [DHCR7](DHCR7) | 2 | Schmitz et al. 2012 |
85
+| [DLGAP1](DLGAP1) | 2 | Love et al. 2012 |
86
+| [DNMT1](DNMT1) | 2 | Panea et al. 2019 |
87
+| [DTX1](DTX1) | 2, aSHM | Schmitz et al. 2018; Panea et al. 2019 |
88
+| [E2F2](E2F2) | 2 | Burkhardt et al. 2022 |
89
+| [EBF1](EBF1) | 2, aSHM | Bohle et al. 2013; Thomas et al. 2023 |
90
+| [EDNRB](EDNRB) | 2 | Burkhardt et al. 2022 |
91
+| [EHD1](EHD1) | 2 | Thomas et al. 2023 |
92
+| [EIF2C4](EIF2C4) | 2 | Love et al. 2012 |
93
+| [ELP2](ELP2) | 2 | Schmitz et al. 2012 |
94
+| [EML2](EML2) | 2 | Love et al. 2012 |
95
+| [ENTPD3](ENTPD3) | 2 | Love et al. 2012 |
96
+| [EP300](EP300) | 2 | Panea et al. 2019; Laura Pasqualucci, Dominguez-Sola, et al. 2011 |
97
+| [EPHB2](EPHB2) | 2 | Love et al. 2012 |
98
+| [ERAP1](ERAP1) | 2 | Burkhardt et al. 2022 |
99
+| [ETS1](ETS1) | 2, aSHM | Panea et al. 2019; Morin et al. 2011 |
100
+| [EXOSC6](EXOSC6) | 2 | Schmitz et al. 2012 |
101
+| [EZH2](EZH2) | 2 | Love et al. 2012; Morin et al. 2010 |
102
+| [FAM129B](FAM129B) | 2 | Love et al. 2012 |
103
+| [FGFR3](FGFR3) | 2 | Love et al. 2012 |
104
+| [FLYWCH1](FLYWCH1) | 2 | Schmitz et al. 2012 |
105
+| [FTCD](FTCD) | 2 | Love et al. 2012 |
106
+| [FZD3](FZD3) | 2 | Panea et al. 2019 |
107
+| [GGTLA4](GGTLA4) | 2 | Love et al. 2012 |
108
+| [GRB2](GRB2) | 2 | Laura Pasqualucci, Trifonov, et al. 2011; Panea et al. 2019 |
109
+| [GRIK5](GRIK5) | 2 | Love et al. 2012 |
110
+| [GTSE1](GTSE1) | 2 | Schmitz et al. 2012 |
111
+| [HIST1H1C](HIST1H1C) | 2, aSHM | Panea et al. 2019; Morin et al. 2011 |
112
+| [HIST1H1E](HIST1H1E) | 2, aSHM | Grande et al. 2019; Morin et al. 2013; Krysiak et al. 2017 |
113
+| [HIST1H2AG](HIST1H2AG) | 2, aSHM | Krysiak et al. 2017; Morin et al. 2013; Panea et al. 2019 |
114
+| [HIST1H2AM](HIST1H2AM) | 2, aSHM | Panea et al. 2019; Krysiak et al. 2017 |
115
+| [HIST1H2BK](HIST1H2BK) | 2, aSHM | Panea et al. 2019 |
116
+| [HIST1H3D](HIST1H3D) | 2, aSHM | Panea et al. 2019 |
117
+| [HIST1H3H](HIST1H3H) | 2, aSHM | Panea et al. 2019 |
118
+| [HIST1H3I](HIST1H3I) | 2, aSHM | Krysiak et al. 2017; Panea et al. 2019 |
119
+| [HIST1H3J](HIST1H3J) | 2, aSHM | Panea et al. 2019 |
120
+| [HIST1H4J](HIST1H4J) | 2, aSHM | Panea et al. 2019 |
121 121
| [HLA-A](HLA-A) | 2 | |
122 122
| [HLA-B](HLA-B) | 2 | |
123 123
| [HLA-DMB](HLA-DMB) | 2 | |
124
-| [HLA-DQB1](HLA-DQB1) | 2 | Burkhardt et al. 2022 |
125
-| [ICK](ICK) | 2 | Love et al. 2012 |
126
-| [IGLL5](IGLL5) | 2, aSHM | Russler-Germain et al. 2023; Panea et al. 2019 |
127
-| [IKZF3](IKZF3) | 2, aSHM | Panea et al. 2019; Morin et al. 2013 |
128
-| [IRF8](IRF8) | 2, aSHM | Panea et al. 2019; Morin et al. 2011 |
129
-| [ITPR3](ITPR3) | 2 | Love et al. 2012 |
130
-| [KANK2](KANK2) | 2 | Schmitz et al. 2012 |
131
-| [KCNK10](KCNK10) | 2 | Panea et al. 2019 |
132
-| [KIFC3](KIFC3) | 2 | Love et al. 2012 |
133
-| [KLHL26](KLHL26) | 2 | Burkhardt et al. 2022 |
134
-| [KLHL6](KLHL6) | 2, aSHM | Morin et al. 2011; Panea et al. 2019 |
135
-| [KMT2C](KMT2C) | 2 | Zhang et al. 2014; Zhang et al. 2013; Zhou et al. 2019 |
136
-| [LTB](LTB) | 2, aSHM | Chapuy et al. 2018; Panea et al. 2019 |
137
-| [MAP3K6](MAP3K6) | 2 | Love et al. 2012 |
138
-| [MCL1](MCL1) | 2 | Reddy et al. 2017; Panea et al. 2019 |
139
-| [MIR142](MIR142) | 2, aSHM | Kwanhian et al. 2012; Grande et al. 2019 |
140
-| [MKI67](MKI67) | 2 | Schmitz et al. 2012; Russler-Germain et al. 2023 |
141
-| [MME](MME) | 2 | Panea et al. 2019 |
142
-| [MTOR](MTOR) | 2 | Zhang et al. 2013; Panea et al. 2019 |
143
-| [MYH10](MYH10) | 2 | Love et al. 2012 |
144
-| [MYO18A](MYO18A) | 2 | Schmitz et al. 2012 |
145
-| [NBEAL1](NBEAL1) | 2 | Love et al. 2012 |
146
-| [NCOR2](NCOR2) | 2 | Schmitz et al. 2012 |
147
-| [NOA1](NOA1) | 2 | Burkhardt et al. 2022 |
148
-| [NOTCH1](NOTCH1) | 2 | Beà et al. 2013; Laura Pasqualucci, Trifonov, et al. 2011; Love et al. 2012 |
149
-| [NOTCH2](NOTCH2) | 2 | Beà et al. 2013; Panea et al. 2019; Trøen et al. 2008 |
150
-| [NRXN2](NRXN2) | 2 | Love et al. 2012 |
151
-| [P2RY2](P2RY2) | 2 | Love et al. 2012 |
152
-| [PABPC4L](PABPC4L) | 2 | Panea et al. 2019 |
153
-| [PC](PC) | 2 | Love et al. 2012 |
154
-| [PCBP1](PCBP1) | 2 | Schmitz et al. 2012 |
155
-| [PCDHA11](PCDHA11) | 2 | Panea et al. 2019 |
156
-| [PDCD11](PDCD11) | 2 | Schmitz et al. 2012 |
157
-| [PDZRN3](PDZRN3) | 2 | Panea et al. 2019 |
158
-| [PIK3R1](PIK3R1) | 2 | Panea et al. 2019; Zhang et al. 2013 |
159
-| [PIM1](PIM1) | 2, aSHM | Burkhardt et al. 2022; L. Pasqualucci et al. 2001 |
160
-| [PLCG2](PLCG2) | 2 | Panea et al. 2019 |
161
-| [POLRMT](POLRMT) | 2 | Love et al. 2012 |
162
-| [POR](POR) | 2 | Love et al. 2012 |
163
-| [PPP6R2](PPP6R2) | 2 | Burkhardt et al. 2022 |
164
-| [PREX1](PREX1) | 2 | Burkhardt et al. 2022 |
165
-| [PRSS22](PRSS22) | 2 | Love et al. 2012 |
166
-| [PTPRN](PTPRN) | 2 | Love et al. 2012 |
167
-| [PXDNL](PXDNL) | 2 | Panea et al. 2019 |
168
-| [RAC2](RAC2) | 2 | Hübschmann et al. 2021; Panea et al. 2019 |
169
-| [RANBP6](RANBP6) | 2 | Love et al. 2012 |
170
-| [RBP3](RBP3) | 2 | Love et al. 2012 |
171
-| [RET](RET) | 2 | Love et al. 2012 |
172
-| [REV3L](REV3L) | 2 | Burkhardt et al. 2022 |
173
-| [RNF144B](RNF144B) | 2 | Panea et al. 2019 |
174
-| [RPL10](RPL10) | 2 | Burkhardt et al. 2022 |
175
-| [S1PR2](S1PR2) | 2, aSHM | Muppidi et al. 2014; Morin et al. 2011 |
176
-| [SAL3](SAL3) | 2 | Burkhardt et al. 2022 |
177
-| [SALL3](SALL3) | 2 | Love et al. 2012; Zhang et al. 2014 |
178
-| [SAPS2](SAPS2) | 2 | Love et al. 2012 |
179
-| [SBF1](SBF1) | 2 | Love et al. 2012 |
180
-| [SF3B1](SF3B1) | 2 | Love et al. 2012 |
181
-| [SHANK1](SHANK1) | 2 | Love et al. 2012 |
182
-| [SLC29A2](SLC29A2) | 2 | Love et al. 2012 |
183
-| [SNTB2](SNTB2) | 2 | Panea et al. 2019 |
184
-| [SP3](SP3) | 2 | Panea et al. 2019 |
185
-| [SYNCRIP](SYNCRIP) | 2 | Panea et al. 2019 |
186
-| [SYNGAP1](SYNGAP1) | 2 | Love et al. 2012 |
187
-| [TBC1D9B](TBC1D9B) | 2 | Love et al. 2012 |
188
-| [TET2](TET2) | 2 | Panea et al. 2019; Albuquerque et al. 2017 |
189
-| [TIGD6](TIGD6) | 2 | Love et al. 2012 |
190
-| [TOP2A](TOP2A) | 2 | Schmitz et al. 2012 |
191
-| [TPST2](TPST2) | 2 | Love et al. 2012 |
192
-| [TTN](TTN) | 2 | Burkhardt et al. 2022 |
193
-| [VWA7](VWA7) | 2 | Burkhardt et al. 2022 |
194
-| [WDR7](WDR7) | 2 | Panea et al. 2019 |
195
-| [WDR90](WDR90) | 2 | Schmitz et al. 2012 |
196
-| [WHAMM](WHAMM) | 2 | Schmitz et al. 2012 |
197
-| [WNK2](WNK2) | 2 | Panea et al. 2019 |
198
-| [YY1AP1](YY1AP1) | 2 | Schmitz et al. 2012 |
199
-| [ZAN](ZAN) | 2 | Burkhardt et al. 2022 |
200
-| [ZBTB7A](ZBTB7A) | 2 | Burkhardt et al. 2022; Reddy et al. 2017 |
201
-| [ZFP36L1](ZFP36L1) | 2, aSHM | Panea et al. 2019; Morin et al. 2011 |
202
-| [ZNF229](ZNF229) | 2 | Love et al. 2012 |
203
-| [ZNF85](ZNF85) | 2 | Burkhardt et al. 2022 |
124
+| [HLA-DQB1](HLA-DQB1) | 2 | Burkhardt et al. 2022 |
125
+| [ICK](ICK) | 2 | Love et al. 2012 |
126
+| [IGLL5](IGLL5) | 2, aSHM | Russler-Germain et al. 2023; Panea et al. 2019 |
127
+| [IKZF3](IKZF3) | 2, aSHM | Morin et al. 2013; Panea et al. 2019 |
128
+| [IRF8](IRF8) | 2, aSHM | Morin et al. 2011; Panea et al. 2019 |
129
+| [ITPR3](ITPR3) | 2 | Love et al. 2012 |
130
+| [KANK2](KANK2) | 2 | Schmitz et al. 2012 |
131
+| [KCNK10](KCNK10) | 2 | Panea et al. 2019 |
132
+| [KIFC3](KIFC3) | 2 | Love et al. 2012 |
133
+| [KLHL26](KLHL26) | 2 | Burkhardt et al. 2022 |
134
+| [KLHL6](KLHL6) | 2, aSHM | Panea et al. 2019; Morin et al. 2011 |
135
+| [KMT2C](KMT2C) | 2 | Zhang et al. 2014; Zhang et al. 2013; Zhou et al. 2019 |
136
+| [LTB](LTB) | 2, aSHM | Chapuy et al. 2018; Panea et al. 2019 |
137
+| [MAP3K6](MAP3K6) | 2 | Love et al. 2012 |
138
+| [MCL1](MCL1) | 2 | Reddy et al. 2017; Panea et al. 2019 |
139
+| [MIR142](MIR142) | 2, aSHM | Kwanhian et al. 2012; Grande et al. 2019 |
140
+| [MKI67](MKI67) | 2 | Russler-Germain et al. 2023; Schmitz et al. 2012 |
141
+| [MME](MME) | 2 | Panea et al. 2019 |
142
+| [MTOR](MTOR) | 2 | Zhang et al. 2013; Panea et al. 2019 |
143
+| [MYH10](MYH10) | 2 | Love et al. 2012 |
144
+| [MYO18A](MYO18A) | 2 | Schmitz et al. 2012 |
145
+| [NBEAL1](NBEAL1) | 2 | Love et al. 2012 |
146
+| [NCOR2](NCOR2) | 2 | Schmitz et al. 2012 |
147
+| [NOA1](NOA1) | 2 | Burkhardt et al. 2022 |
148
+| [NOTCH1](NOTCH1) | 2 | Beà et al. 2013; Love et al. 2012; Laura Pasqualucci, Trifonov, et al. 2011 |
149
+| [NOTCH2](NOTCH2) | 2 | Panea et al. 2019; Beà et al. 2013; Trøen et al. 2008 |
150
+| [NRXN2](NRXN2) | 2 | Love et al. 2012 |
151
+| [P2RY2](P2RY2) | 2 | Love et al. 2012 |
152
+| [PABPC4L](PABPC4L) | 2 | Panea et al. 2019 |
153
+| [PC](PC) | 2 | Love et al. 2012 |
154
+| [PCBP1](PCBP1) | 2 | Schmitz et al. 2012 |
155
+| [PCDHA11](PCDHA11) | 2 | Panea et al. 2019 |
156
+| [PDCD11](PDCD11) | 2 | Schmitz et al. 2012 |
157
+| [PDZRN3](PDZRN3) | 2 | Panea et al. 2019 |
158
+| [PIK3R1](PIK3R1) | 2 | Zhang et al. 2013; Panea et al. 2019 |
159
+| [PIM1](PIM1) | 2, aSHM | Burkhardt et al. 2022; L. Pasqualucci et al. 2001 |
160
+| [PLCG2](PLCG2) | 2 | Panea et al. 2019 |
161
+| [POLRMT](POLRMT) | 2 | Love et al. 2012 |
162
+| [POR](POR) | 2 | Love et al. 2012 |
163
+| [PPP6R2](PPP6R2) | 2 | Burkhardt et al. 2022 |
164
+| [PREX1](PREX1) | 2 | Burkhardt et al. 2022 |
165
+| [PRSS22](PRSS22) | 2 | Love et al. 2012 |
166
+| [PTPRN](PTPRN) | 2 | Love et al. 2012 |
167
+| [PXDNL](PXDNL) | 2 | Panea et al. 2019 |
168
+| [RAC2](RAC2) | 2 | Panea et al. 2019; Hübschmann et al. 2021 |
169
+| [RANBP6](RANBP6) | 2 | Love et al. 2012 |
170
+| [RBP3](RBP3) | 2 | Love et al. 2012 |
171
+| [RET](RET) | 2 | Love et al. 2012 |
172
+| [REV3L](REV3L) | 2 | Burkhardt et al. 2022 |
173
+| [RNF144B](RNF144B) | 2 | Panea et al. 2019 |
174
+| [RPL10](RPL10) | 2 | Burkhardt et al. 2022 |
175
+| [S1PR2](S1PR2) | 2, aSHM | Muppidi et al. 2014; Morin et al. 2011 |
176
+| [SAL3](SAL3) | 2 | Burkhardt et al. 2022 |
177
+| [SALL3](SALL3) | 2 | Love et al. 2012; Zhang et al. 2014 |
178
+| [SAPS2](SAPS2) | 2 | Love et al. 2012 |
179
+| [SBF1](SBF1) | 2 | Love et al. 2012 |
180
+| [SF3B1](SF3B1) | 2 | Love et al. 2012 |
181
+| [SHANK1](SHANK1) | 2 | Love et al. 2012 |
182
+| [SLC29A2](SLC29A2) | 2 | Love et al. 2012 |
183
+| [SNTB2](SNTB2) | 2 | Panea et al. 2019 |
184
+| [SP3](SP3) | 2 | Panea et al. 2019 |
185
+| [SYNCRIP](SYNCRIP) | 2 | Panea et al. 2019 |
186
+| [SYNGAP1](SYNGAP1) | 2 | Love et al. 2012 |
187
+| [TBC1D9B](TBC1D9B) | 2 | Love et al. 2012 |
188
+| [TET2](TET2) | 2 | Panea et al. 2019; Albuquerque et al. 2017 |
189
+| [TIGD6](TIGD6) | 2 | Love et al. 2012 |
190
+| [TOP2A](TOP2A) | 2 | Schmitz et al. 2012 |
191
+| [TPST2](TPST2) | 2 | Love et al. 2012 |
192
+| [TTN](TTN) | 2 | Burkhardt et al. 2022 |
193
+| [VWA7](VWA7) | 2 | Burkhardt et al. 2022 |
194
+| [WDR7](WDR7) | 2 | Panea et al. 2019 |
195
+| [WDR90](WDR90) | 2 | Schmitz et al. 2012 |
196
+| [WHAMM](WHAMM) | 2 | Schmitz et al. 2012 |
197
+| [WNK2](WNK2) | 2 | Panea et al. 2019 |
198
+| [YY1AP1](YY1AP1) | 2 | Schmitz et al. 2012 |
199
+| [ZAN](ZAN) | 2 | Burkhardt et al. 2022 |
200
+| [ZBTB7A](ZBTB7A) | 2 | Reddy et al. 2017; Burkhardt et al. 2022 |
201
+| [ZFP36L1](ZFP36L1) | 2, aSHM | Panea et al. 2019; Morin et al. 2011 |
202
+| [ZNF229](ZNF229) | 2 | Love et al. 2012 |
203
+| [ZNF85](ZNF85) | 2 | Burkhardt et al. 2022 |
204 204
205 205
# References
206 206
DLBCL_genes.md
... ...
@@ -6,341 +6,341 @@
6 6
7 7
### *131 total*
8 8
9
-| Gene | Tier | Relevant references |
10
-|:----------------------:|:------------:|:--------------------------------------------------------------------------------:|
11
-| [ACTB](ACTB) | 1, aSHM | Lohr et al. 2012 |
12
-| [ACTG1](ACTG1) | 1, aSHM | Hübschmann et al. 2021 |
13
-| [ARID1A](ARID1A) | 1 | Zhang et al. 2013; Love et al. 2012; Krysiak et al. 2017 |
14
-| [ATM](ATM) | 1 | Beà et al. 2013; Reddy et al. 2017 |
15
-| [B2M](B2M) | 1 | Morin et al. 2011; Pararajalingam et al. 2020 |
16
-| [BCL10](BCL10) | 1 | Morin et al. 2011; Russler-Germain et al. 2023 |
17
-| [BCL2](BCL2) | 1, aSHM | Tanaka et al. 1992; Morin et al. 2011; Burkhardt et al. 2022 |
18
-| [BCL6](BCL6) | 1, aSHM | Morin et al. 2011; Love et al. 2012 |
19
-| [BCL7A](BCL7A) | 1, aSHM | Arthur et al. 2018; Grande et al. 2019; Krysiak et al. 2017 |
20
-| [BIRC6](BIRC6) | 1 | Reddy et al. 2017 |
21
-| [BRAF](BRAF) | 1 | Love et al. 2012; Tiacci et al. 2011 |
22
-| [BTG1](BTG1) | 1, aSHM | Morin et al. 2011; Burkhardt et al. 2022 |
23
-| [BTG2](BTG2) | 1, aSHM | Morin et al. 2011; Love et al. 2012 |
24
-| [BTK](BTK) | 1 | Krysiak et al. 2017; Albuquerque et al. 2017 |
25
-| [CARD11](CARD11) | 1 | Panea et al. 2019; Lenz et al. 2008; Morin et al. 2011; Wu et al. 2016 |
26
-| [CASP8](CASP8) | 1 | Reddy et al. 2017 |
27
-| [CCND3](CCND3) | 1 | Morin et al. 2011; Richter et al. 2012 |
28
-| [CD58](CD58) | 1 | Morin et al. 2011 |
29
-| [CD70](CD70) | 1 | Morin et al. 2011; Russler-Germain et al. 2023 |
30
-| [CD79B](CD79B) | 1 | Panea et al. 2019; Morin et al. 2011 |
31
-| [CD83](CD83) | 1, aSHM | Morin et al. 2013; Panea et al. 2019; Russler-Germain et al. 2023 |
32
-| [CDKN2A](CDKN2A) | 1 | Morin et al. 2013; Grande et al. 2019 |
33
-| [CIITA](CIITA) | 1, aSHM | Morin et al. 2011 |
34
-| [CREBBP](CREBBP) | 1 | Love et al. 2012; Laura Pasqualucci, Dominguez-Sola, et al. 2011 |
35
-| [CXCR4](CXCR4) | 1, aSHM | Krysiak et al. 2017; Panea et al. 2019; Khodabakhshi et al. 2012 |
36
-| [CXCR5](CXCR5) | 1 | Schmitz et al. 2018 |
37
-| [DDX3X](DDX3X) | 1 | Schmitz et al. 2018, 2012 |
38
-| [DTX1](DTX1) | 1, aSHM | Schmitz et al. 2018; Panea et al. 2019 |
39
-| [DUSP2](DUSP2) | 1, aSHM | Morin et al. 2013 |
40
-| [EBF1](EBF1) | 1, aSHM | Bohle et al. 2013; Thomas et al. 2023 |
41
-| [EEF1A1](EEF1A1) | 1 | Hübschmann et al. 2021 |
42
-| [EP300](EP300) | 1 | Laura Pasqualucci, Dominguez-Sola, et al. 2011; Panea et al. 2019 |
43
-| [ETS1](ETS1) | 1, aSHM | Panea et al. 2019; Morin et al. 2011 |
44
-| [ETV6](ETV6) | 1, aSHM | Arthur et al. 2018 |
45
-| [EZH2](EZH2) | 1 | Love et al. 2012; Morin et al. 2010 |
46
-| [FAS](FAS) | 1 | Scholl et al. 2007 |
47
-| [FBXO11](FBXO11) | 1 | Richter et al. 2012; Hübschmann et al. 2021 |
48
-| [FBXW7](FBXW7) | 1 | Zhang et al. 2013 |
49
-| [FOXO1](FOXO1) | 1 | Schmitz et al. 2012; Morin et al. 2011 |
50
-| [GNA13](GNA13) | 1 | Love et al. 2012; Morin et al. 2011 |
51
-| [GNAI2](GNAI2) | 1 | Grande et al. 2019; Morin et al. 2013 |
52
-| [GRB2](GRB2) | 1 | Panea et al. 2019; Laura Pasqualucci, Trifonov, et al. 2011 |
53
-| [GRHPR](GRHPR) | 1, aSHM | Arthur et al. 2018 |
54
-| [HIST1H1B](HIST1H1B) | 1, aSHM | Chapuy et al. 2018; Krysiak et al. 2017 |
55
-| [HIST1H1C](HIST1H1C) | 1, aSHM | Panea et al. 2019; Morin et al. 2011 |
56
-| [HIST1H1D](HIST1H1D) | 1, aSHM | Morin et al. 2013; Krysiak et al. 2017 |
57
-| [HIST1H1E](HIST1H1E) | 1, aSHM | Grande et al. 2019; Krysiak et al. 2017; Morin et al. 2013 |
58
-| [HIST1H2AC](HIST1H2AC) | 1, aSHM | Krysiak et al. 2017; Morin et al. 2013 |
59
-| [HIST1H2AM](HIST1H2AM) | 1, aSHM | Panea et al. 2019; Krysiak et al. 2017 |
60
-| [HIST1H2BC](HIST1H2BC) | 1, aSHM | Reddy et al. 2017; Krysiak et al. 2017 |
61
-| [HIST1H2BK](HIST1H2BK) | 1, aSHM | Panea et al. 2019 |
62
-| [HIST1H3B](HIST1H3B) | 1, aSHM | Zhang et al. 2013 |
63
-| [HIST2H2BE](HIST2H2BE) | 1, aSHM | Schmitz et al. 2018 |
9
+| Gene | Tier | Relevant references |
10
+|:----------------------:|:------------:|:---------------------------------------------------------------------------------|
11
+| [ACTB](ACTB) | 1, aSHM | Lohr et al. 2012 |
12
+| [ACTG1](ACTG1) | 1, aSHM | Hübschmann et al. 2021 |
13
+| [ARID1A](ARID1A) | 1 | Zhang et al. 2013; Krysiak et al. 2017; Love et al. 2012 |
14
+| [ATM](ATM) | 1 | Reddy et al. 2017; Beà et al. 2013 |
15
+| [B2M](B2M) | 1 | Morin et al. 2011; Pararajalingam et al. 2020 |
16
+| [BCL10](BCL10) | 1 | Morin et al. 2011; Russler-Germain et al. 2023 |
17
+| [BCL2](BCL2) | 1, aSHM | Burkhardt et al. 2022; Tanaka et al. 1992; Morin et al. 2011 |
18
+| [BCL6](BCL6) | 1, aSHM | Morin et al. 2011; Love et al. 2012 |
19
+| [BCL7A](BCL7A) | 1, aSHM | Grande et al. 2019; Arthur et al. 2018; Krysiak et al. 2017 |
20
+| [BIRC6](BIRC6) | 1 | Reddy et al. 2017 |
21
+| [BRAF](BRAF) | 1 | Tiacci et al. 2011; Love et al. 2012 |
22
+| [BTG1](BTG1) | 1, aSHM | Morin et al. 2011; Burkhardt et al. 2022 |
23
+| [BTG2](BTG2) | 1, aSHM | Morin et al. 2011; Love et al. 2012 |
24
+| [BTK](BTK) | 1 | Krysiak et al. 2017; Albuquerque et al. 2017 |
25
+| [CARD11](CARD11) | 1 | Lenz et al. 2008; Morin et al. 2011; Wu et al. 2016; Panea et al. 2019 |
26
+| [CASP8](CASP8) | 1 | Reddy et al. 2017 |
27
+| [CCND3](CCND3) | 1 | Richter et al. 2012; Morin et al. 2011 |
28
+| [CD58](CD58) | 1 | Morin et al. 2011 |
29
+| [CD70](CD70) | 1 | Morin et al. 2011; Russler-Germain et al. 2023 |
30
+| [CD79B](CD79B) | 1 | Morin et al. 2011; Panea et al. 2019 |
31
+| [CD83](CD83) | 1, aSHM | Russler-Germain et al. 2023; Panea et al. 2019; Morin et al. 2013 |
32
+| [CDKN2A](CDKN2A) | 1 | Morin et al. 2013; Grande et al. 2019 |
33
+| [CIITA](CIITA) | 1, aSHM | Morin et al. 2011 |
34
+| [CREBBP](CREBBP) | 1 | Love et al. 2012; Laura Pasqualucci, Dominguez-Sola, et al. 2011 |
35
+| [CXCR4](CXCR4) | 1, aSHM | Krysiak et al. 2017; Panea et al. 2019; Khodabakhshi et al. 2012 |
36
+| [CXCR5](CXCR5) | 1 | Schmitz et al. 2018 |
37
+| [DDX3X](DDX3X) | 1 | Schmitz et al. 2012, 2018 |
38
+| [DTX1](DTX1) | 1, aSHM | Panea et al. 2019; Schmitz et al. 2018 |
39
+| [DUSP2](DUSP2) | 1, aSHM | Morin et al. 2013 |
40
+| [EBF1](EBF1) | 1, aSHM | Bohle et al. 2013; Thomas et al. 2023 |
41
+| [EEF1A1](EEF1A1) | 1 | Hübschmann et al. 2021 |
42
+| [EP300](EP300) | 1 | Laura Pasqualucci, Dominguez-Sola, et al. 2011; Panea et al. 2019 |
43
+| [ETS1](ETS1) | 1, aSHM | Panea et al. 2019; Morin et al. 2011 |
44
+| [ETV6](ETV6) | 1, aSHM | Arthur et al. 2018 |
45
+| [EZH2](EZH2) | 1 | Love et al. 2012; Morin et al. 2010 |
46
+| [FAS](FAS) | 1 | Scholl et al. 2007 |
47
+| [FBXO11](FBXO11) | 1 | Hübschmann et al. 2021; Richter et al. 2012 |
48
+| [FBXW7](FBXW7) | 1 | Zhang et al. 2013 |
49
+| [FOXO1](FOXO1) | 1 | Schmitz et al. 2012; Morin et al. 2011 |
50
+| [GNA13](GNA13) | 1 | Love et al. 2012; Morin et al. 2011 |
51
+| [GNAI2](GNAI2) | 1 | Grande et al. 2019; Morin et al. 2013 |
52
+| [GRB2](GRB2) | 1 | Laura Pasqualucci, Trifonov, et al. 2011; Panea et al. 2019 |
53
+| [GRHPR](GRHPR) | 1, aSHM | Arthur et al. 2018 |
54
+| [HIST1H1B](HIST1H1B) | 1, aSHM | Chapuy et al. 2018; Krysiak et al. 2017 |
55
+| [HIST1H1C](HIST1H1C) | 1, aSHM | Morin et al. 2011; Panea et al. 2019 |
56
+| [HIST1H1D](HIST1H1D) | 1, aSHM | Morin et al. 2013; Krysiak et al. 2017 |
57
+| [HIST1H1E](HIST1H1E) | 1, aSHM | Krysiak et al. 2017; Morin et al. 2013; Grande et al. 2019 |
58
+| [HIST1H2AC](HIST1H2AC) | 1, aSHM | Krysiak et al. 2017; Morin et al. 2013 |
59
+| [HIST1H2AM](HIST1H2AM) | 1, aSHM | Krysiak et al. 2017; Panea et al. 2019 |
60
+| [HIST1H2BC](HIST1H2BC) | 1, aSHM | Reddy et al. 2017; Krysiak et al. 2017 |
61
+| [HIST1H2BK](HIST1H2BK) | 1, aSHM | Panea et al. 2019 |
62
+| [HIST1H3B](HIST1H3B) | 1, aSHM | Zhang et al. 2013 |
63
+| [HIST2H2BE](HIST2H2BE) | 1, aSHM | Schmitz et al. 2018 |
64 64
| [HLA-A](HLA-A) | 1 | |
65 65
| [HLA-B](HLA-B) | 1 | |
66 66
| [HLA-C](HLA-C) | 1 | |
67 67
| [HLA-DMB](HLA-DMB) | 1 | |
68
-| [HNRNPU](HNRNPU) | 1, aSHM | Reddy et al. 2017; Panea et al. 2019 |
69
-| [HVCN1](HVCN1) | 1 | Krysiak et al. 2017 |
70
-| [IKZF3](IKZF3) | 1 | Panea et al. 2019; Morin et al. 2013 |
71
-| [IL4R](IL4R) | 1, aSHM | Duns et al. 2021 |
72
-| [IRF4](IRF4) | 1, aSHM | Morin et al. 2011 |
73
-| [IRF8](IRF8) | 1, aSHM | Morin et al. 2011; Panea et al. 2019 |
74
-| [ITPKB](ITPKB) | 1, aSHM | Schmitz et al. 2018 |
75
-| [KLF2](KLF2) | 1, aSHM | Laura Pasqualucci, Trifonov, et al. 2011 |
76
-| [KLHL14](KLHL14) | 1 | Zhang et al. 2013 |
77
-| [KLHL6](KLHL6) | 1, aSHM | Morin et al. 2011; Panea et al. 2019 |
78
-| [KMT2C](KMT2C) | 1 | Zhang et al. 2014; Zhang et al. 2013; Zhou et al. 2019 |
79
-| [KMT2D](KMT2D) | 1 | Grande et al. 2019; Beà et al. 2013; Morin et al. 2011 |
80
-| [KRAS](KRAS) | 1 | Lohr et al. 2012 |
81
-| [LCOR](LCOR) | 1 | Arthur et al. 2018 |
82
-| [LTB](LTB) | 1, aSHM | Chapuy et al. 2018; Panea et al. 2019 |
83
-| [MEF2B](MEF2B) | 1, aSHM | Beà et al. 2013; Morin et al. 2011 |
84
-| [MEF2C](MEF2C) | 1, aSHM | Arthur et al. 2018 |
85
-| [MGA](MGA) | 1 | Zhang et al. 2013 |
86
-| [MPEG1](MPEG1) | 1 | Morin et al. 2013 |
87
-| [MS4A1](MS4A1) | 1, aSHM | Rushton et al. 2020 |
88
-| [MTOR](MTOR) | 1 | Panea et al. 2019; Zhang et al. 2013 |
89
-| [MYC](MYC) | 1, aSHM | L. Pasqualucci et al. 2001; Johnston and Carroll 1992 |
90
-| [MYD88](MYD88) | 1 | Ngo et al. 2011 |
91
-| [MYOM2](MYOM2) | 1 | Laura Pasqualucci, Trifonov, et al. 2011 |
92
-| [NFKBIA](NFKBIA) | 1 | Russler-Germain et al. 2023; Lake et al. 2009 |
93
-| [NFKBIE](NFKBIE) | 1 | Pararajalingam et al. 2020; Morin et al. 2016 |
94
-| [NFKBIZ](NFKBIZ) | 1, noncoding | Morin et al. 2016 |
95
-| [NOL9](NOL9) | 1 | Schmitz et al. 2018 |
96
-| [NOTCH1](NOTCH1) | 1 | Laura Pasqualucci, Trifonov, et al. 2011; Love et al. 2012; Beà et al. 2013 |
97
-| [NOTCH2](NOTCH2) | 1 | Trøen et al. 2008; Panea et al. 2019; Beà et al. 2013 |
98
-| [OSBPL10](OSBPL10) | 1, aSHM | Arthur et al. 2018 |
99
-| [P2RY8](P2RY8) | 1 | Lohr et al. 2012; Muppidi et al. 2014 |
100
-| [PCBP1](PCBP1) | 1 | Schmitz et al. 2012 |
101
-| [PIM1](PIM1) | 1, aSHM | Burkhardt et al. 2022; L. Pasqualucci et al. 2001 |
102
-| [PIM2](PIM2) | 1, aSHM | Arthur et al. 2018 |
103
-| [POU2AF1](POU2AF1) | 1, aSHM | Krysiak et al. 2017 |
104
-| [POU2F2](POU2F2) | 1 | Krysiak et al. 2017; Zhang et al. 2013 |
105
-| [PRDM1](PRDM1) | 1 | Laura Pasqualucci et al. 2006 |
106
-| [PTEN](PTEN) | 1 | Love et al. 2012 |
68
+| [HNRNPU](HNRNPU) | 1, aSHM | Panea et al. 2019; Reddy et al. 2017 |
69
+| [HVCN1](HVCN1) | 1 | Krysiak et al. 2017 |
70
+| [IKZF3](IKZF3) | 1 | Morin et al. 2013; Panea et al. 2019 |
71
+| [IL4R](IL4R) | 1, aSHM | Duns et al. 2021 |
72
+| [IRF4](IRF4) | 1, aSHM | Morin et al. 2011 |
73
+| [IRF8](IRF8) | 1, aSHM | Morin et al. 2011; Panea et al. 2019 |
74
+| [ITPKB](ITPKB) | 1, aSHM | Schmitz et al. 2018 |
75
+| [KLF2](KLF2) | 1, aSHM | Laura Pasqualucci, Trifonov, et al. 2011 |
76
+| [KLHL14](KLHL14) | 1 | Zhang et al. 2013 |
77
+| [KLHL6](KLHL6) | 1, aSHM | Morin et al. 2011; Panea et al. 2019 |
78
+| [KMT2C](KMT2C) | 1 | Zhang et al. 2014; Zhou et al. 2019; Zhang et al. 2013 |
79
+| [KMT2D](KMT2D) | 1 | Grande et al. 2019; Morin et al. 2011; Beà et al. 2013 |
80
+| [KRAS](KRAS) | 1 | Lohr et al. 2012 |
81
+| [LCOR](LCOR) | 1 | Arthur et al. 2018 |
82
+| [LTB](LTB) | 1, aSHM | Chapuy et al. 2018; Panea et al. 2019 |
83
+| [MEF2B](MEF2B) | 1, aSHM | Beà et al. 2013; Morin et al. 2011 |
84
+| [MEF2C](MEF2C) | 1, aSHM | Arthur et al. 2018 |
85
+| [MGA](MGA) | 1 | Zhang et al. 2013 |
86
+| [MPEG1](MPEG1) | 1 | Morin et al. 2013 |
87
+| [MS4A1](MS4A1) | 1, aSHM | Rushton et al. 2020 |
88
+| [MTOR](MTOR) | 1 | Zhang et al. 2013; Panea et al. 2019 |
89
+| [MYC](MYC) | 1, aSHM | Johnston and Carroll 1992; L. Pasqualucci et al. 2001 |
90
+| [MYD88](MYD88) | 1 | Ngo et al. 2011 |
91
+| [MYOM2](MYOM2) | 1 | Laura Pasqualucci, Trifonov, et al. 2011 |
92
+| [NFKBIA](NFKBIA) | 1 | Russler-Germain et al. 2023; Lake et al. 2009 |
93
+| [NFKBIE](NFKBIE) | 1 | Pararajalingam et al. 2020; Morin et al. 2016 |
94
+| [NFKBIZ](NFKBIZ) | 1, noncoding | Morin et al. 2016 |
95
+| [NOL9](NOL9) | 1 | Schmitz et al. 2018 |
96
+| [NOTCH1](NOTCH1) | 1 | Love et al. 2012; Beà et al. 2013; Laura Pasqualucci, Trifonov, et al. 2011 |
97
+| [NOTCH2](NOTCH2) | 1 | Beà et al. 2013; Trøen et al. 2008; Panea et al. 2019 |
98
+| [OSBPL10](OSBPL10) | 1, aSHM | Arthur et al. 2018 |
99
+| [P2RY8](P2RY8) | 1 | Lohr et al. 2012; Muppidi et al. 2014 |
100
+| [PCBP1](PCBP1) | 1 | Schmitz et al. 2012 |
101
+| [PIM1](PIM1) | 1, aSHM | Burkhardt et al. 2022; L. Pasqualucci et al. 2001 |
102
+| [PIM2](PIM2) | 1, aSHM | Arthur et al. 2018 |
103
+| [POU2AF1](POU2AF1) | 1, aSHM | Krysiak et al. 2017 |
104
+| [POU2F2](POU2F2) | 1 | Krysiak et al. 2017; Zhang et al. 2013 |
105
+| [PRDM1](PRDM1) | 1 | Laura Pasqualucci et al. 2006 |
106
+| [PTEN](PTEN) | 1 | Love et al. 2012 |
107 107
| [PTPRD](PTPRD) | 1 | |
108
-| [RB1](RB1) | 1 | Morin et al. 2013; Zhang et al. 2014 |
109
-| [RFX7](RFX7) | 1 | Grande et al. 2019 |
110
-| [RHOA](RHOA) | 1 | Richter et al. 2012 |
111
-| [RRAGC](RRAGC) | 1 | Okosun et al. 2016 |
112
-| [S1PR2](S1PR2) | 1, aSHM | Muppidi et al. 2014; Morin et al. 2011 |
113
-| [SETD1B](SETD1B) | 1 | Reddy et al. 2017 |
114
-| [SF3B1](SF3B1) | 1 | Love et al. 2012 |
115
-| [SGK1](SGK1) | 1, aSHM | Morin et al. 2011 |
116
-| [SIN3A](SIN3A) | 1 | Grande et al. 2019 |
117
-| [SMARCA4](SMARCA4) | 1 | Zhang et al. 2013; Nadeu et al. 2020; Richter et al. 2012; Krysiak et al. 2017 |
118
-| [SOCS1](SOCS1) | 1, aSHM | Morin et al. 2011 |
119
-| [SPEN](SPEN) | 1 | Rossi et al. 2012 |
120
-| [STAT3](STAT3) | 1 | Ohgami et al. 2014 |
121
-| [STAT6](STAT6) | 1 | Yildiz et al. 2015 |
122
-| [TAF1](TAF1) | 1 | Morin et al. 2013 |
123
-| [TBL1XR1](TBL1XR1) | 1 | Mareschal et al. 2016 |
124
-| [TET2](TET2) | 1 | Albuquerque et al. 2017; Panea et al. 2019 |
125
-| [TMEM30A](TMEM30A) | 1 | Morin et al. 2011 |
126
-| [TMSB4X](TMSB4X) | 1, aSHM | Albuquerque et al. 2017 |
127
-| [TNFAIP3](TNFAIP3) | 1 | Compagno et al. 2009 |
128
-| [TNFRSF14](TNFRSF14) | 1 | Cheung et al. 2010 |
129
-| [TOX](TOX) | 1 | Reddy et al. 2017 |
130
-| [TP53](TP53) | 1 | Wilda et al. 2004; Morin et al. 2011; Beà et al. 2013 |
131
-| [TRRAP](TRRAP) | 1 | Parry et al. 2013 |
132
-| [UBE2A](UBE2A) | 1 | Reddy et al. 2017 |
108
+| [RB1](RB1) | 1 | Zhang et al. 2014; Morin et al. 2013 |
109
+| [RFX7](RFX7) | 1 | Grande et al. 2019 |
110
+| [RHOA](RHOA) | 1 | Richter et al. 2012 |
111
+| [RRAGC](RRAGC) | 1 | Okosun et al. 2016 |
112
+| [S1PR2](S1PR2) | 1, aSHM | Muppidi et al. 2014; Morin et al. 2011 |
113
+| [SETD1B](SETD1B) | 1 | Reddy et al. 2017 |
114
+| [SF3B1](SF3B1) | 1 | Love et al. 2012 |
115
+| [SGK1](SGK1) | 1, aSHM | Morin et al. 2011 |
116
+| [SIN3A](SIN3A) | 1 | Grande et al. 2019 |
117
+| [SMARCA4](SMARCA4) | 1 | Zhang et al. 2013; Krysiak et al. 2017; Nadeu et al. 2020; Richter et al. 2012 |
118
+| [SOCS1](SOCS1) | 1, aSHM | Morin et al. 2011 |
119
+| [SPEN](SPEN) | 1 | Rossi et al. 2012 |
120
+| [STAT3](STAT3) | 1 | Ohgami et al. 2014 |
121
+| [STAT6](STAT6) | 1 | Yildiz et al. 2015 |
122
+| [TAF1](TAF1) | 1 | Morin et al. 2013 |
123
+| [TBL1XR1](TBL1XR1) | 1 | Mareschal et al. 2016 |
124
+| [TET2](TET2) | 1 | Panea et al. 2019; Albuquerque et al. 2017 |
125
+| [TMEM30A](TMEM30A) | 1 | Morin et al. 2011 |
126
+| [TMSB4X](TMSB4X) | 1, aSHM | Albuquerque et al. 2017 |
127
+| [TNFAIP3](TNFAIP3) | 1 | Compagno et al. 2009 |
128
+| [TNFRSF14](TNFRSF14) | 1 | Cheung et al. 2010 |
129
+| [TOX](TOX) | 1 | Reddy et al. 2017 |
130
+| [TP53](TP53) | 1 | Beà et al. 2013; Wilda et al. 2004; Morin et al. 2011 |
131
+| [TRRAP](TRRAP) | 1 | Parry et al. 2013 |
132
+| [UBE2A](UBE2A) | 1 | Reddy et al. 2017 |
133 133
| [UNC5C](UNC5C) | 1 | |
134
-| [USP7](USP7) | 1 | Grande et al. 2019 |
134
+| [USP7](USP7) | 1 | Grande et al. 2019 |
135 135
| [VPS13B](VPS13B) | 1 | |
136
-| [WEE1](WEE1) | 1 | Schmitz et al. 2018 |
137
-| [XPO1](XPO1) | 1 | Mareschal et al. 2016 |
138
-| [ZC3H12A](ZC3H12A) | 1 | Arthur et al. 2018 |
139
-| [ZFP36L1](ZFP36L1) | 1, aSHM | Panea et al. 2019; Morin et al. 2011 |
140
-| [ZNF292](ZNF292) | 1 | Zhang et al. 2013 |
141
-| [ZNF608](ZNF608) | 1 | Krysiak et al. 2017; Zhang et al. 2013 |
136
+| [WEE1](WEE1) | 1 | Schmitz et al. 2018 |
137
+| [XPO1](XPO1) | 1 | Mareschal et al. 2016 |
138
+| [ZC3H12A](ZC3H12A) | 1 | Arthur et al. 2018 |
139
+| [ZFP36L1](ZFP36L1) | 1, aSHM | Morin et al. 2011; Panea et al. 2019 |
140
+| [ZNF292](ZNF292) | 1 | Zhang et al. 2013 |
141
+| [ZNF608](ZNF608) | 1 | Zhang et al. 2013; Krysiak et al. 2017 |
142 142
143 143
## Tier 2 DLBCL genes
144 144
145 145
### *195 total*
146 146
147
-| Gene | Tier | Relevant references |
148
-|:----------------------:|:------------:|:-----------------------------------------------------------:|
149
-| [ABI3BP](ABI3BP) | 2 | Morin et al. 2013 |
150
-| [ADAMTS1](ADAMTS1) | 2 | Hübschmann et al. 2021 |
151
-| [AICDA](AICDA) | 2, aSHM | Arthur et al. 2018 |
152
-| [ANKRD12](ANKRD12) | 2 | Hübschmann et al. 2021 |
153
-| [ANKRD17](ANKRD17) | 2 | Reddy et al. 2017 |
154
-| [ARID1B](ARID1B) | 2 | Reddy et al. 2017 |
155
-| [ARID5B](ARID5B) | 2 | Reddy et al. 2017 |
156
-| [ATR](ATR) | 2 | Reddy et al. 2017 |
147
+| Gene | Tier | Relevant references |
148
+|:----------------------:|:------------:|:------------------------------------------------------------|
149
+| [ABI3BP](ABI3BP) | 2 | Morin et al. 2013 |
150
+| [ADAMTS1](ADAMTS1) | 2 | Hübschmann et al. 2021 |
151
+| [AICDA](AICDA) | 2, aSHM | Arthur et al. 2018 |
152
+| [ANKRD12](ANKRD12) | 2 | Hübschmann et al. 2021 |
153
+| [ANKRD17](ANKRD17) | 2 | Reddy et al. 2017 |
154
+| [ARID1B](ARID1B) | 2 | Reddy et al. 2017 |
155
+| [ARID5B](ARID5B) | 2 | Reddy et al. 2017 |
156
+| [ATR](ATR) | 2 | Reddy et al. 2017 |
157 157
| [BCL11A](BCL11A) | 2, aSHM | |
158
-| [BCOR](BCOR) | 2 | Nadeu et al. 2020 |
158
+| [BCOR](BCOR) | 2 | Nadeu et al. 2020 |
159 159
| [BCR](BCR) | 2 | |
160
-| [BIRC3](BIRC3) | 2, aSHM | Beà et al. 2013; Arthur et al. 2018 |
160
+| [BIRC3](BIRC3) | 2, aSHM | Arthur et al. 2018; Beà et al. 2013 |
161 161
| [BLK](BLK) | 2, aSHM | |
162
-| [BRINP3](BRINP3) | 2 | Reddy et al. 2017 |
163
-| [BTBD3](BTBD3) | 2 | Reddy et al. 2017 |
164
-| [CADPS2](CADPS2) | 2 | Hübschmann et al. 2021 |
165
-| [CBLB](CBLB) | 2 | Reddy et al. 2017 |
166
-| [CCL4](CCL4) | 2 | Chapuy et al. 2018 |
167
-| [CD22](CD22) | 2 | Reddy et al. 2017 |
168
-| [CD274](CD274) | 2 | Morin et al. 2011 |
169
-| [CD36](CD36) | 2 | Laura Pasqualucci, Trifonov, et al. 2011 |
170
-| [CD44](CD44) | 2, aSHM | Arthur et al. 2018 |
171
-| [CD74](CD74) | 2, aSHM | Arthur et al. 2018 |
172
-| [CDC73](CDC73) | 2 | Reddy et al. 2017; Love et al. 2012 |
173
-| [CDH9](CDH9) | 2 | Morin et al. 2013 |
174
-| [CHD1](CHD1) | 2 | Reddy et al. 2017 |
175
-| [CHD8](CHD8) | 2 | Grande et al. 2019; Reddy et al. 2017 |
176
-| [CHST2](CHST2) | 2 | Reddy et al. 2017 |
177
-| [CNOT2](CNOT2) | 2 | Hübschmann et al. 2021 |
178
-| [CNTNAP5](CNTNAP5) | 2 | Morin et al. 2013 |
179
-| [COQ7](COQ7) | 2 | Chapuy et al. 2018 |
180
-| [CRIP1](CRIP1) | 2 | Chapuy et al. 2018 |
181
-| [DAZAP1](DAZAP1) | 2 | Pararajalingam et al. 2020 |
182
-| [DCAF6](DCAF6) | 2 | Reddy et al. 2017 |
183
-| [DDX10](DDX10) | 2 | Reddy et al. 2017 |
184
-| [DHX16](DHX16) | 2 | Hübschmann et al. 2021 |
185
-| [DICER1](DICER1) | 2 | Reddy et al. 2017 |
186
-| [DNAH5](DNAH5) | 2 | Morin et al. 2013 |
187
-| [DNM2](DNM2) | 2 | Hübschmann et al. 2021 |
188
-| [DNMT3A](DNMT3A) | 2 | Reddy et al. 2017 |
189
-| [DOCK1](DOCK1) | 2 | Chapuy et al. 2018 |
190
-| [DSG4](DSG4) | 2 | Morin et al. 2013 |
162
+| [BRINP3](BRINP3) | 2 | Reddy et al. 2017 |
163
+| [BTBD3](BTBD3) | 2 | Reddy et al. 2017 |
164
+| [CADPS2](CADPS2) | 2 | Hübschmann et al. 2021 |
165
+| [CBLB](CBLB) | 2 | Reddy et al. 2017 |
166
+| [CCL4](CCL4) | 2 | Chapuy et al. 2018 |
167
+| [CD22](CD22) | 2 | Reddy et al. 2017 |
168
+| [CD274](CD274) | 2 | Morin et al. 2011 |
169
+| [CD36](CD36) | 2 | Laura Pasqualucci, Trifonov, et al. 2011 |
170
+| [CD44](CD44) | 2, aSHM | Arthur et al. 2018 |
171
+| [CD74](CD74) | 2, aSHM | Arthur et al. 2018 |
172
+| [CDC73](CDC73) | 2 | Reddy et al. 2017; Love et al. 2012 |
173
+| [CDH9](CDH9) | 2 | Morin et al. 2013 |
174
+| [CHD1](CHD1) | 2 | Reddy et al. 2017 |
175
+| [CHD8](CHD8) | 2 | Grande et al. 2019; Reddy et al. 2017 |
176
+| [CHST2](CHST2) | 2 | Reddy et al. 2017 |
177
+| [CNOT2](CNOT2) | 2 | Hübschmann et al. 2021 |
178
+| [CNTNAP5](CNTNAP5) | 2 | Morin et al. 2013 |
179
+| [COQ7](COQ7) | 2 | Chapuy et al. 2018 |
180
+| [CRIP1](CRIP1) | 2 | Chapuy et al. 2018 |
181
+| [DAZAP1](DAZAP1) | 2 | Pararajalingam et al. 2020 |
182
+| [DCAF6](DCAF6) | 2 | Reddy et al. 2017 |
183
+| [DDX10](DDX10) | 2 | Reddy et al. 2017 |
184
+| [DHX16](DHX16) | 2 | Hübschmann et al. 2021 |
185
+| [DICER1](DICER1) | 2 | Reddy et al. 2017 |
186
+| [DNAH5](DNAH5) | 2 | Morin et al. 2013 |
187
+| [DNM2](DNM2) | 2 | Hübschmann et al. 2021 |
188
+| [DNMT3A](DNMT3A) | 2 | Reddy et al. 2017 |
189
+| [DOCK1](DOCK1) | 2 | Chapuy et al. 2018 |
190
+| [DSG4](DSG4) | 2 | Morin et al. 2013 |
191 191
| [EIF2AK3](EIF2AK3) | 2, aSHM | |
192 192
| [EZR](EZR) | 2, aSHM | |
193 193
| [FAM102A](FAM102A) | 2, aSHM | |
194
-| [FAM38B](FAM38B) | 2 | Morin et al. 2013 |
194
+| [FAM38B](FAM38B) | 2 | Morin et al. 2013 |
195 195
| [FANK1](FANK1) | 2, aSHM | |
196
-| [FAT4](FAT4) | 2 | Morin et al. 2013; Zhang et al. 2014 |
196
+| [FAT4](FAT4) | 2 | Morin et al. 2013; Zhang et al. 2014 |
197 197
| [FCRL3](FCRL3) | 2, aSHM | |
198 198
| [FNBP1](FNBP1) | 2, aSHM | |
199
-| [FNDC1](FNDC1) | 2 | Morin et al. 2013 |
200
-| [FOXC1](FOXC1) | 2 | Schmitz et al. 2018 |
201
-| [FOXP1](FOXP1) | 2, aSHM | Reddy et al. 2017 |
202
-| [FUBP1](FUBP1) | 2 | Reddy et al. 2017 |
203
-| [FUT5](FUT5) | 2 | Chapuy et al. 2018 |
204
-| [GABRA2](GABRA2) | 2 | Chapuy et al. 2018 |
205
-| [GAK](GAK) | 2 | Hübschmann et al. 2021 |
206
-| [GNAS](GNAS) | 2 | Reddy et al. 2017 |
207
-| [GOLGA5](GOLGA5) | 2 | Reddy et al. 2017 |
208
-| [GPC5](GPC5) | 2 | Schmitz et al. 2018 |
209
-| [GSG2](GSG2) | 2 | Schmitz et al. 2018 |
210
-| [HDAC7](HDAC7) | 2 | Morin et al. 2013 |
211
-| [HIST1H2AG](HIST1H2AG) | 2 | Krysiak et al. 2017; Morin et al. 2013; Panea et al. 2019 |
199
+| [FNDC1](FNDC1) | 2 | Morin et al. 2013 |
200
+| [FOXC1](FOXC1) | 2 | Schmitz et al. 2018 |
201
+| [FOXP1](FOXP1) | 2, aSHM | Reddy et al. 2017 |
202
+| [FUBP1](FUBP1) | 2 | Reddy et al. 2017 |
203
+| [FUT5](FUT5) | 2 | Chapuy et al. 2018 |
204
+| [GABRA2](GABRA2) | 2 | Chapuy et al. 2018 |
205
+| [GAK](GAK) | 2 | Hübschmann et al. 2021 |
206
+| [GNAS](GNAS) | 2 | Reddy et al. 2017 |
207
+| [GOLGA5](GOLGA5) | 2 | Reddy et al. 2017 |
208
+| [GPC5](GPC5) | 2 | Schmitz et al. 2018 |
209
+| [GSG2](GSG2) | 2 | Schmitz et al. 2018 |
210
+| [HDAC7](HDAC7) | 2 | Morin et al. 2013 |
211
+| [HIST1H2AG](HIST1H2AG) | 2 | Morin et al. 2013; Krysiak et al. 2017; Panea et al. 2019 |
212 212
| [HLA-DMA](HLA-DMA) | 2 | |
213
-| [HLA-DQA1](HLA-DQA1) | 2 | Hübschmann et al. 2021 |
214
-| [HNF1B](HNF1B) | 2 | Laura Pasqualucci, Trifonov, et al. 2011 |
213
+| [HLA-DQA1](HLA-DQA1) | 2 | Hübschmann et al. 2021 |
214
+| [HNF1B](HNF1B) | 2 | Laura Pasqualucci, Trifonov, et al. 2011 |
215 215
| [HNRNPD](HNRNPD) | 2 | |
216
-| [HNRNPH1](HNRNPH1) | 2, noncoding | Pararajalingam et al. 2020 |
217
-| [HRAS](HRAS) | 2 | Reddy et al. 2017 |
218
-| [ID3](ID3) | 2 | Schmitz et al. 2012; Richter et al. 2012 |
219
-| [IER2](IER2) | 2 | Morin et al. 2013 |
220
-| [IFNGR1](IFNGR1) | 2 | Morin et al. 2013 |
221
-| [IGLL5](IGLL5) | 2, aSHM | Russler-Germain et al. 2023; Panea et al. 2019 |
222
-| [IKBKB](IKBKB) | 2 | Reddy et al. 2017 |
223
-| [IKBKE](IKBKE) | 2 | Hübschmann et al. 2021 |
216
+| [HNRNPH1](HNRNPH1) | 2, noncoding | Pararajalingam et al. 2020 |
217
+| [HRAS](HRAS) | 2 | Reddy et al. 2017 |
218
+| [ID3](ID3) | 2 | Richter et al. 2012; Schmitz et al. 2012 |
219
+| [IER2](IER2) | 2 | Morin et al. 2013 |
220
+| [IFNGR1](IFNGR1) | 2 | Morin et al. 2013 |
221
+| [IGLL5](IGLL5) | 2, aSHM | Panea et al. 2019; Russler-Germain et al. 2023 |
222
+| [IKBKB](IKBKB) | 2 | Reddy et al. 2017 |
223
+| [IKBKE](IKBKE) | 2 | Hübschmann et al. 2021 |
224 224
| [IL16](IL16) | 2 | |
225
-| [IL6](IL6) | 2 | Chapuy et al. 2018 |
226
-| [INO80](INO80) | 2 | Zhang et al. 2013 |
225
+| [IL6](IL6) | 2 | Chapuy et al. 2018 |
226
+| [INO80](INO80) | 2 | Zhang et al. 2013 |
227 227
| [IRAG2](IRAG2) | 2, aSHM | |
228
-| [IRF1](IRF1) | 2, aSHM | Hübschmann et al. 2021 |
229
-| [JAK1](JAK1) | 2 | Zhang et al. 2013 |
230
-| [JAK3](JAK3) | 2 | Zhang et al. 2013 |
231
-| [JUNB](JUNB) | 2 | Reddy et al. 2017 |
232
-| [KCMF1](KCMF1) | 2 | Reddy et al. 2017 |
233
-| [KLHL21](KLHL21) | 2 | Schmitz et al. 2018 |
234
-| [LAMA5](LAMA5) | 2 | Schmitz et al. 2018 |
235
-| [LAPTM5](LAPTM5) | 2, aSHM | Hübschmann et al. 2021 |
236
-| [LIN54](LIN54) | 2 | Reddy et al. 2017 |
237
-| [LPP](LPP) | 2, aSHM | Arthur et al. 2018 |
238
-| [LRP12](LRP12) | 2 | Hübschmann et al. 2021 |
239
-| [LRRN3](LRRN3) | 2 | Morin et al. 2013 |
240
-| [LYN](LYN) | 2 | Chapuy et al. 2018 |
241
-| [MAGT1](MAGT1) | 2 | Reddy et al. 2017 |
242
-| [MALAT1](MALAT1) | 2, aSHM | Arthur et al. 2018 |
243
-| [MAP2K1](MAP2K1) | 2 | Louissaint et al. 2016; Shin et al. 2015 |
244
-| [MAP4K4](MAP4K4) | 2 | Reddy et al. 2017 |
245
-| [MARK1](MARK1) | 2 | Reddy et al. 2017 |
246
-| [MCL1](MCL1) | 2 | Reddy et al. 2017; Panea et al. 2019 |
247
-| [MECOM](MECOM) | 2 | Reddy et al. 2017 |
248
-| [MET](MET) | 2 | Reddy et al. 2017 |
249
-| [MIR142](MIR142) | 2, aSHM | Grande et al. 2019; Kwanhian et al. 2012 |
228
+| [IRF1](IRF1) | 2, aSHM | Hübschmann et al. 2021 |
229
+| [JAK1](JAK1) | 2 | Zhang et al. 2013 |
230
+| [JAK3](JAK3) | 2 | Zhang et al. 2013 |
231
+| [JUNB](JUNB) | 2 | Reddy et al. 2017 |
232
+| [KCMF1](KCMF1) | 2 | Reddy et al. 2017 |
233
+| [KLHL21](KLHL21) | 2 | Schmitz et al. 2018 |
234
+| [LAMA5](LAMA5) | 2 | Schmitz et al. 2018 |
235
+| [LAPTM5](LAPTM5) | 2, aSHM | Hübschmann et al. 2021 |
236
+| [LIN54](LIN54) | 2 | Reddy et al. 2017 |
237
+| [LPP](LPP) | 2, aSHM | Arthur et al. 2018 |
238
+| [LRP12](LRP12) | 2 | Hübschmann et al. 2021 |
239
+| [LRRN3](LRRN3) | 2 | Morin et al. 2013 |
240
+| [LYN](LYN) | 2 | Chapuy et al. 2018 |
241
+| [MAGT1](MAGT1) | 2 | Reddy et al. 2017 |
242
+| [MALAT1](MALAT1) | 2, aSHM | Arthur et al. 2018 |
243
+| [MAP2K1](MAP2K1) | 2 | Louissaint et al. 2016; Shin et al. 2015 |
244
+| [MAP4K4](MAP4K4) | 2 | Reddy et al. 2017 |
245
+| [MARK1](MARK1) | 2 | Reddy et al. 2017 |
246
+| [MCL1](MCL1) | 2 | Reddy et al. 2017; Panea et al. 2019 |
247
+| [MECOM](MECOM) | 2 | Reddy et al. 2017 |
248
+| [MET](MET) | 2 | Reddy et al. 2017 |
249
+| [MIR142](MIR142) | 2, aSHM | Kwanhian et al. 2012; Grande et al. 2019 |
250 250
| [MIR155HG](MIR155HG) | 2, aSHM | |
251
-| [MPDZ](MPDZ) | 2 | Morin et al. 2013 |
252
-| [MSH2](MSH2) | 2 | Reddy et al. 2017 |
253
-| [MSH6](MSH6) | 2 | Reddy et al. 2017 |
254
-| [MYB](MYB) | 2 | Reddy et al. 2017 |
255
-| [MYBPC2](MYBPC2) | 2 | Schmitz et al. 2018 |
251
+| [MPDZ](MPDZ) | 2 | Morin et al. 2013 |
252
+| [MSH2](MSH2) | 2 | Reddy et al. 2017 |
253
+| [MSH6](MSH6) | 2 | Reddy et al. 2017 |
254
+| [MYB](MYB) | 2 | Reddy et al. 2017 |
255
+| [MYBPC2](MYBPC2) | 2 | Schmitz et al. 2018 |
256 256
| [MYO1E](MYO1E) | 2, aSHM | |
257
-| [N2RF2](N2RF2) | 2 | Hübschmann et al. 2021 |
258
-| [NANOG](NANOG) | 2 | Chapuy et al. 2018 |
259
-| [NAV1](NAV1) | 2 | Chapuy et al. 2018 |
257
+| [N2RF2](N2RF2) | 2 | Hübschmann et al. 2021 |
258
+| [NANOG](NANOG) | 2 | Chapuy et al. 2018 |
259
+| [NAV1](NAV1) | 2 | Chapuy et al. 2018 |
260 260
| [NCOA3](NCOA3) | 2, aSHM | |
261
-| [NCOR1](NCOR1) | 2 | Reddy et al. 2017 |
262
-| [NCOR2](NCOR2) | 2 | Schmitz et al. 2012 |
263
-| [NEAT1](NEAT1) | 2, aSHM | Arthur et al. 2018 |
264
-| [NF1](NF1) | 2 | Reddy et al. 2017 |
261
+| [NCOR1](NCOR1) | 2 | Reddy et al. 2017 |
262
+| [NCOR2](NCOR2) | 2 | Schmitz et al. 2012 |
263
+| [NEAT1](NEAT1) | 2, aSHM | Arthur et al. 2018 |
264
+| [NF1](NF1) | 2 | Reddy et al. 2017 |
265 265
| [NFKB1](NFKB1) | 2 | |
266
-| [NFKB2](NFKB2) | 2 | Reddy et al. 2017 |
266
+| [NFKB2](NFKB2) | 2 | Reddy et al. 2017 |
267 267
| [NLRC5](NLRC5) | 2 | |
268
-| [NLRP5](NLRP5) | 2 | Morin et al. 2013 |
269
-| [NLRP8](NLRP8) | 2 | Chapuy et al. 2018 |
270
-| [ODZ3](ODZ3) | 2 | Morin et al. 2013 |
271
-| [P2RX5](P2RX5) | 2, aSHM | Morin et al. 2013 |
272
-| [PAPOLG](PAPOLG) | 2 | Schmitz et al. 2018 |
273
-| [PASK](PASK) | 2 | Morin et al. 2013 |
274
-| [PAX5](PAX5) | 2, aSHM | L. Pasqualucci et al. 2001 |
275
-| [PCDHB11](PCDHB11) | 2 | Morin et al. 2013 |
276
-| [PCLO](PCLO) | 2 | Lohr et al. 2012 |
277
-| [PDE4DIP](PDE4DIP) | 2 | Chapuy et al. 2018 |
278
-| [PDS5B](PDS5B) | 2 | Morin et al. 2013; Hübschmann et al. 2021 |
279
-| [PHF6](PHF6) | 2 | Thomas et al. 2023; Reddy et al. 2017 |
280
-| [PIK3CD](PIK3CD) | 2 | Reddy et al. 2017 |
281
-| [PIK3R1](PIK3R1) | 2 | Zhang et al. 2013; Panea et al. 2019 |
282
-| [PKD1](PKD1) | 2 | Morin et al. 2013 |
283
-| [PNPO](PNPO) | 2 | Hübschmann et al. 2021 |
284
-| [POGZ](POGZ) | 2 | Morin et al. 2013 |
268
+| [NLRP5](NLRP5) | 2 | Morin et al. 2013 |
269
+| [NLRP8](NLRP8) | 2 | Chapuy et al. 2018 |
270
+| [ODZ3](ODZ3) | 2 | Morin et al. 2013 |
271
+| [P2RX5](P2RX5) | 2, aSHM | Morin et al. 2013 |
272
+| [PAPOLG](PAPOLG) | 2 | Schmitz et al. 2018 |
273
+| [PASK](PASK) | 2 | Morin et al. 2013 |
274
+| [PAX5](PAX5) | 2, aSHM | L. Pasqualucci et al. 2001 |
275
+| [PCDHB11](PCDHB11) | 2 | Morin et al. 2013 |
276
+| [PCLO](PCLO) | 2 | Lohr et al. 2012 |
277
+| [PDE4DIP](PDE4DIP) | 2 | Chapuy et al. 2018 |
278
+| [PDS5B](PDS5B) | 2 | Morin et al. 2013; Hübschmann et al. 2021 |
279
+| [PHF6](PHF6) | 2 | Reddy et al. 2017; Thomas et al. 2023 |
280
+| [PIK3CD](PIK3CD) | 2 | Reddy et al. 2017 |
281
+| [PIK3R1](PIK3R1) | 2 | Zhang et al. 2013; Panea et al. 2019 |
282
+| [PKD1](PKD1) | 2 | Morin et al. 2013 |
283
+| [PNPO](PNPO) | 2 | Hübschmann et al. 2021 |
284
+| [POGZ](POGZ) | 2 | Morin et al. 2013 |
285 285
| [PPP1R9B](PPP1R9B) | 2 | |
286
-| [PRKCB](PRKCB) | 2 | Morin et al. 2013 |
287
-| [PRKDC](PRKDC) | 2 | Hübschmann et al. 2021; Schmitz et al. 2018 |
288
-| [PRPS1](PRPS1) | 2 | Chapuy et al. 2018 |
286
+| [PRKCB](PRKCB) | 2 | Morin et al. 2013 |
287
+| [PRKDC](PRKDC) | 2 | Hübschmann et al. 2021; Schmitz et al. 2018 |
288
+| [PRPS1](PRPS1) | 2 | Chapuy et al. 2018 |
289 289
| [PTMA](PTMA) | 2, aSHM | |
290 290
| [PTPN1](PTPN1) | 2, aSHM | |
291
-| [PTPN23](PTPN23) | 2 | Morin et al. 2013 |
292
-| [PTPN6](PTPN6) | 2 | Reddy et al. 2017 |
293
-| [PTPRK](PTPRK) | 2 | Reddy et al. 2017 |
294
-| [RAC2](RAC2) | 2 | Panea et al. 2019; Hübschmann et al. 2021 |
295
-| [RAD9A](RAD9A) | 2 | Chapuy et al. 2018 |
296
-| [RARA](RARA) | 2 | Reddy et al. 2017 |
291
+| [PTPN23](PTPN23) | 2 | Morin et al. 2013 |
292
+| [PTPN6](PTPN6) | 2 | Reddy et al. 2017 |
293
+| [PTPRK](PTPRK) | 2 | Reddy et al. 2017 |
294
+| [RAC2](RAC2) | 2 | Panea et al. 2019; Hübschmann et al. 2021 |
295
+| [RAD9A](RAD9A) | 2 | Chapuy et al. 2018 |
296
+| [RARA](RARA) | 2 | Reddy et al. 2017 |
297 297
| [RCC](RCC) | 2, aSHM | |
298
-| [RFTN1](RFTN1) | 2, aSHM | Arthur et al. 2018 |
298
+| [RFTN1](RFTN1) | 2, aSHM | Arthur et al. 2018 |
299 299
| [RFXAP](RFXAP) | 2 | |
300 300
| [RHEX](RHEX) | 2, aSHM | |
301
-| [RHOH](RHOH) | 2, aSHM | L. Pasqualucci et al. 2001 |
301
+| [RHOH](RHOH) | 2, aSHM | L. Pasqualucci et al. 2001 |
302 302
| [RUBCNL](RUBCNL) | 2, aSHM | |
303
-| [RUNX1](RUNX1) | 2 | Reddy et al. 2017 |
304
-| [SAMD9L](SAMD9L) | 2 | Morin et al. 2013 |
305
-| [SARM1](SARM1) | 2 | Morin et al. 2013 |
303
+| [RUNX1](RUNX1) | 2 | Reddy et al. 2017 |
304
+| [SAMD9L](SAMD9L) | 2 | Morin et al. 2013 |
305
+| [SARM1](SARM1) | 2 | Morin et al. 2013 |
306 306
| [SEL1L3](SEL1L3) | 2, aSHM | |
307 307
| [SEPTIN9](SEPTIN9) | 2, aSHM | |
308
-| [SERPINA9](SERPINA9) | 2, aSHM | Arthur et al. 2018 |
309
-| [SETD2](SETD2) | 2 | Zhang et al. 2013 |
310
-| [SETD5](SETD5) | 2 | Reddy et al. 2017 |
311
-| [SIAH2](SIAH2) | 2 | Hübschmann et al. 2021 |
312
-| [SLC34A2](SLC34A2) | 2 | Hübschmann et al. 2021 |
313
-| [SMEK1](SMEK1) | 2 | Chapuy et al. 2018 |
314
-| [SRRM2](SRRM2) | 2 | Russler-Germain et al. 2023; Morin et al. 2013 |
315
-| [ST6GAL1](ST6GAL1) | 2, aSHM | Arthur et al. 2018 |
316
-| [STAT5B](STAT5B) | 2 | Zhang et al. 2013 |
317
-| [SYK](SYK) | 2 | Reddy et al. 2017 |
318
-| [SYPL1](SYPL1) | 2 | Morin et al. 2013 |
319
-| [TAP1](TAP1) | 2 | Schmitz et al. 2018 |
320
-| [TBC1D4](TBC1D4) | 2, aSHM | Arthur et al. 2018 |
321
-| [TCL1A](TCL1A) | 2, aSHM | Grande et al. 2019 |
322
-| [TGFBR2](TGFBR2) | 2 | Reddy et al. 2017 |
323
-| [TIPARP](TIPARP) | 2 | Reddy et al. 2017 |
324
-| [TLR2](TLR2) | 2 | Chapuy et al. 2018; Beà et al. 2013 |
325
-| [TRAF3](TRAF3) | 2 | Laura Pasqualucci, Trifonov, et al. 2011 |
326
-| [TRAF6](TRAF6) | 2 | Hübschmann et al. 2021 |
308
+| [SERPINA9](SERPINA9) | 2, aSHM | Arthur et al. 2018 |
309
+| [SETD2](SETD2) | 2 | Zhang et al. 2013 |
310
+| [SETD5](SETD5) | 2 | Reddy et al. 2017 |
311
+| [SIAH2](SIAH2) | 2 | Hübschmann et al. 2021 |
312
+| [SLC34A2](SLC34A2) | 2 | Hübschmann et al. 2021 |
313
+| [SMEK1](SMEK1) | 2 | Chapuy et al. 2018 |
314
+| [SRRM2](SRRM2) | 2 | Russler-Germain et al. 2023; Morin et al. 2013 |
315
+| [ST6GAL1](ST6GAL1) | 2, aSHM | Arthur et al. 2018 |
316
+| [STAT5B](STAT5B) | 2 | Zhang et al. 2013 |
317
+| [SYK](SYK) | 2 | Reddy et al. 2017 |
318
+| [SYPL1](SYPL1) | 2 | Morin et al. 2013 |
319
+| [TAP1](TAP1) | 2 | Schmitz et al. 2018 |
320
+| [TBC1D4](TBC1D4) | 2, aSHM | Arthur et al. 2018 |
321
+| [TCL1A](TCL1A) | 2, aSHM | Grande et al. 2019 |
322
+| [TGFBR2](TGFBR2) | 2 | Reddy et al. 2017 |
323
+| [TIPARP](TIPARP) | 2 | Reddy et al. 2017 |
324
+| [TLR2](TLR2) | 2 | Beà et al. 2013; Chapuy et al. 2018 |
325
+| [TRAF3](TRAF3) | 2 | Laura Pasqualucci, Trifonov, et al. 2011 |
326
+| [TRAF6](TRAF6) | 2 | Hübschmann et al. 2021 |
327 327
| [TRIP12](TRIP12) | 2 | |
328 328
| [UBE2J1](UBE2J1) | 2, aSHM | |
329
-| [UBR5](UBR5) | 2 | Pararajalingam et al. 2020; Zhang et al. 2013 |
330
-| [UNC5B](UNC5B) | 2 | Hübschmann et al. 2021 |
329
+| [UBR5](UBR5) | 2 | Zhang et al. 2013; Pararajalingam et al. 2020 |
330
+| [UNC5B](UNC5B) | 2 | Hübschmann et al. 2021 |
331 331
| [UNC5D](UNC5D) | 2 | |
332
-| [WAC](WAC) | 2 | Reddy et al. 2017 |
333
-| [WDFY3](WDFY3) | 2 | Morin et al. 2013 |
334
-| [WNK1](WNK1) | 2 | Hübschmann et al. 2021; Thomas et al. 2023 |
332
+| [WAC](WAC) | 2 | Reddy et al. 2017 |
333
+| [WDFY3](WDFY3) | 2 | Morin et al. 2013 |
334
+| [WNK1](WNK1) | 2 | Thomas et al. 2023; Hübschmann et al. 2021 |
335 335
| [XBP1](XBP1) | 2, aSHM | |
336
-| [YY1](YY1) | 2 | Reddy et al. 2017 |
337
-| [ZBTB7A](ZBTB7A) | 2 | Burkhardt et al. 2022; Reddy et al. 2017 |
338
-| [ZCCHC7](ZCCHC7) | 2, aSHM | Arthur et al. 2018 |
339
-| [ZEB2](ZEB2) | 2 | Zhang et al. 2013 |
340
-| [ZFAT](ZFAT) | 2 | Reddy et al. 2017 |
341
-| [ZFX](ZFX) | 2 | Reddy et al. 2017 |
342
-| [ZNF217](ZNF217) | 2 | Hübschmann et al. 2021 |
343
-| [ZNF423](ZNF423) | 2 | Chapuy et al. 2018 |
336
+| [YY1](YY1) | 2 | Reddy et al. 2017 |
337
+| [ZBTB7A](ZBTB7A) | 2 | Burkhardt et al. 2022; Reddy et al. 2017 |
338
+| [ZCCHC7](ZCCHC7) | 2, aSHM | Arthur et al. 2018 |
339
+| [ZEB2](ZEB2) | 2 | Zhang et al. 2013 |
340
+| [ZFAT](ZFAT) | 2 | Reddy et al. 2017 |
341
+| [ZFX](ZFX) | 2 | Reddy et al. 2017 |
342
+| [ZNF217](ZNF217) | 2 | Hübschmann et al. 2021 |
343
+| [ZNF423](ZNF423) | 2 | Chapuy et al. 2018 |
344 344
345 345
# References
346 346
FL_genes.md
... ...
@@ -6,131 +6,131 @@
6 6
7 7
### *66 total*
8 8
9
-| Gene | Tier | Relevant references |
10
-|:----------------------:|:-------:|:--------------------------------------------------------------------------------:|
11
-| [ACTB](ACTB) | 1, aSHM | Lohr et al. 2012 |
12
-| [ARID1A](ARID1A) | 1 | Zhang et al. 2013; Love et al. 2012; Krysiak et al. 2017 |
13
-| [ATP6AP1](ATP6AP1) | 1 | Okosun et al. 2016 |
14
-| [ATP6V1B2](ATP6V1B2) | 1 | Okosun et al. 2016 |
15
-| [B2M](B2M) | 1 | Morin et al. 2011; Pararajalingam et al. 2020 |
16
-| [BCL2](BCL2) | 1, aSHM | Morin et al. 2011; Tanaka et al. 1992; Burkhardt et al. 2022 |
17
-| [BCL6](BCL6) | 1, aSHM | Love et al. 2012; Morin et al. 2011 |
18
-| [BCL7A](BCL7A) | 1, aSHM | Krysiak et al. 2017; Grande et al. 2019; Arthur et al. 2018 |
19
-| [BIRC6](BIRC6) | 1 | Reddy et al. 2017 |
20
-| [BTG1](BTG1) | 1, aSHM | Morin et al. 2011; Burkhardt et al. 2022 |
21
-| [BTG2](BTG2) | 1, aSHM | Love et al. 2012; Morin et al. 2011 |
22
-| [BTK](BTK) | 1 | Albuquerque et al. 2017; Krysiak et al. 2017 |
23
-| [CARD11](CARD11) | 1 | Panea et al. 2019; Morin et al. 2011; Wu et al. 2016; Lenz et al. 2008 |
24
-| [CCND3](CCND3) | 1 | Morin et al. 2011; Richter et al. 2012 |
25
-| [CD83](CD83) | 1, aSHM | Morin et al. 2013; Panea et al. 2019; Russler-Germain et al. 2023 |
26
-| [CREBBP](CREBBP) | 1 | Laura Pasqualucci, Dominguez-Sola, et al. 2011; Love et al. 2012 |
27
-| [CTSS](CTSS) | 1 | Bararia et al. 2020 |
28
-| [DTX1](DTX1) | 1, aSHM | Schmitz et al. 2018; Panea et al. 2019 |
29
-| [EBF1](EBF1) | 1, aSHM | Bohle et al. 2013; Thomas et al. 2023 |
30
-| [EEF1A1](EEF1A1) | 1 | Hübschmann et al. 2021 |
31
-| [EP300](EP300) | 1 | Laura Pasqualucci, Dominguez-Sola, et al. 2011; Panea et al. 2019 |
32
-| [EZH2](EZH2) | 1 | Morin et al. 2010; Love et al. 2012 |
33
-| [FAS](FAS) | 1 | Scholl et al. 2007 |
34
-| [FOXO1](FOXO1) | 1 | Schmitz et al. 2012; Morin et al. 2011 |
35
-| [GNA13](GNA13) | 1 | Love et al. 2012; Morin et al. 2011 |
36
-| [GNAI2](GNAI2) | 1 | Morin et al. 2013; Grande et al. 2019 |
37
-| [HIST1H1B](HIST1H1B) | 1, aSHM | Chapuy et al. 2018; Krysiak et al. 2017 |
38
-| [HIST1H1C](HIST1H1C) | 1, aSHM | Morin et al. 2011; Panea et al. 2019 |
39
-| [HIST1H1D](HIST1H1D) | 1, aSHM | Morin et al. 2013; Krysiak et al. 2017 |
40
-| [HIST1H1E](HIST1H1E) | 1, aSHM | Grande et al. 2019; Krysiak et al. 2017; Morin et al. 2013 |
41
-| [HIST1H2AC](HIST1H2AC) | 1, aSHM | Krysiak et al. 2017; Morin et al. 2013 |
42
-| [HIST1H2AG](HIST1H2AG) | 1, aSHM | Morin et al. 2013; Panea et al. 2019; Krysiak et al. 2017 |
43
-| [HIST1H2AM](HIST1H2AM) | 1, aSHM | Panea et al. 2019; Krysiak et al. 2017 |
44
-| [HIST1H2BC](HIST1H2BC) | 1, aSHM | Krysiak et al. 2017; Reddy et al. 2017 |
45
-| [HIST1H2BD](HIST1H2BD) | 1, aSHM | Krysiak et al. 2017 |
46
-| [HIST1H2BG](HIST1H2BG) | 1, aSHM | Krysiak et al. 2017 |
47
-| [HIST1H3B](HIST1H3B) | 1, aSHM | Zhang et al. 2013 |
48
-| [HIST1H3G](HIST1H3G) | 1, aSHM | Krysiak et al. 2017 |
49
-| [HVCN1](HVCN1) | 1 | Krysiak et al. 2017 |
50
-| [IRF4](IRF4) | 1, aSHM | Morin et al. 2011 |
51
-| [IRF8](IRF8) | 1, aSHM | Panea et al. 2019; Morin et al. 2011 |
52
-| [ITPKB](ITPKB) | 1 | Schmitz et al. 2018 |
53
-| [KLF2](KLF2) | 1, aSHM | Laura Pasqualucci, Trifonov, et al. 2011 |
54
-| [KLHL6](KLHL6) | 1, aSHM | Morin et al. 2011; Panea et al. 2019 |
55
-| [KMT2D](KMT2D) | 1 | Grande et al. 2019; Morin et al. 2011; Beà et al. 2013 |
56
-| [LTB](LTB) | 1, aSHM | Chapuy et al. 2018; Panea et al. 2019 |
57
-| [MAP2K1](MAP2K1) | 1 | Louissaint et al. 2016; Shin et al. 2015 |
58
-| [MEF2B](MEF2B) | 1, aSHM | Beà et al. 2013; Morin et al. 2011 |
59
-| [MEF2C](MEF2C) | 1, aSHM | Arthur et al. 2018 |
60
-| [PCLO](PCLO) | 1 | Lohr et al. 2012 |
61
-| [PIM1](PIM1) | 1, aSHM | Burkhardt et al. 2022; L. Pasqualucci et al. 2001 |
62
-| [POU2AF1](POU2AF1) | 1 | Krysiak et al. 2017 |
63
-| [POU2F2](POU2F2) | 1 | Zhang et al. 2013; Krysiak et al. 2017 |
9
+| Gene | Tier | Relevant references |
10
+|:----------------------:|:-------:|:---------------------------------------------------------------------------------|
11
+| [ACTB](ACTB) | 1, aSHM | Lohr et al. 2012 |
12
+| [ARID1A](ARID1A) | 1 | Zhang et al. 2013; Krysiak et al. 2017; Love et al. 2012 |
13
+| [ATP6AP1](ATP6AP1) | 1 | Okosun et al. 2016 |
14
+| [ATP6V1B2](ATP6V1B2) | 1 | Okosun et al. 2016 |
15
+| [B2M](B2M) | 1 | Morin et al. 2011; Pararajalingam et al. 2020 |
16
+| [BCL2](BCL2) | 1, aSHM | Tanaka et al. 1992; Burkhardt et al. 2022; Morin et al. 2011 |
17
+| [BCL6](BCL6) | 1, aSHM | Love et al. 2012; Morin et al. 2011 |
18
+| [BCL7A](BCL7A) | 1, aSHM | Arthur et al. 2018; Krysiak et al. 2017; Grande et al. 2019 |
19
+| [BIRC6](BIRC6) | 1 | Reddy et al. 2017 |
20
+| [BTG1](BTG1) | 1, aSHM | Morin et al. 2011; Burkhardt et al. 2022 |
21
+| [BTG2](BTG2) | 1, aSHM | Morin et al. 2011; Love et al. 2012 |
22
+| [BTK](BTK) | 1 | Albuquerque et al. 2017; Krysiak et al. 2017 |
23
+| [CARD11](CARD11) | 1 | Morin et al. 2011; Lenz et al. 2008; Wu et al. 2016; Panea et al. 2019 |
24
+| [CCND3](CCND3) | 1 | Richter et al. 2012; Morin et al. 2011 |
25
+| [CD83](CD83) | 1, aSHM | Morin et al. 2013; Panea et al. 2019; Russler-Germain et al. 2023 |
26
+| [CREBBP](CREBBP) | 1 | Laura Pasqualucci, Dominguez-Sola, et al. 2011; Love et al. 2012 |
27
+| [CTSS](CTSS) | 1 | Bararia et al. 2020 |
28
+| [DTX1](DTX1) | 1, aSHM | Panea et al. 2019; Schmitz et al. 2018 |
29
+| [EBF1](EBF1) | 1, aSHM | Bohle et al. 2013; Thomas et al. 2023 |
30
+| [EEF1A1](EEF1A1) | 1 | Hübschmann et al. 2021 |
31
+| [EP300](EP300) | 1 | Panea et al. 2019; Laura Pasqualucci, Dominguez-Sola, et al. 2011 |
32
+| [EZH2](EZH2) | 1 | Morin et al. 2010; Love et al. 2012 |
33
+| [FAS](FAS) | 1 | Scholl et al. 2007 |
34
+| [FOXO1](FOXO1) | 1 | Morin et al. 2011; Schmitz et al. 2012 |
35
+| [GNA13](GNA13) | 1 | Morin et al. 2011; Love et al. 2012 |
36
+| [GNAI2](GNAI2) | 1 | Grande et al. 2019; Morin et al. 2013 |
37
+| [HIST1H1B](HIST1H1B) | 1, aSHM | Chapuy et al. 2018; Krysiak et al. 2017 |
38
+| [HIST1H1C](HIST1H1C) | 1, aSHM | Panea et al. 2019; Morin et al. 2011 |
39
+| [HIST1H1D](HIST1H1D) | 1, aSHM | Krysiak et al. 2017; Morin et al. 2013 |
40
+| [HIST1H1E](HIST1H1E) | 1, aSHM | Grande et al. 2019; Morin et al. 2013; Krysiak et al. 2017 |
41
+| [HIST1H2AC](HIST1H2AC) | 1, aSHM | Morin et al. 2013; Krysiak et al. 2017 |
42
+| [HIST1H2AG](HIST1H2AG) | 1, aSHM | Morin et al. 2013; Krysiak et al. 2017; Panea et al. 2019 |
43
+| [HIST1H2AM](HIST1H2AM) | 1, aSHM | Panea et al. 2019; Krysiak et al. 2017 |
44
+| [HIST1H2BC](HIST1H2BC) | 1, aSHM | Krysiak et al. 2017; Reddy et al. 2017 |
45
+| [HIST1H2BD](HIST1H2BD) | 1, aSHM | Krysiak et al. 2017 |
46
+| [HIST1H2BG](HIST1H2BG) | 1, aSHM | Krysiak et al. 2017 |
47
+| [HIST1H3B](HIST1H3B) | 1, aSHM | Zhang et al. 2013 |
48
+| [HIST1H3G](HIST1H3G) | 1, aSHM | Krysiak et al. 2017 |
49
+| [HVCN1](HVCN1) | 1 | Krysiak et al. 2017 |
50
+| [IRF4](IRF4) | 1, aSHM | Morin et al. 2011 |
51
+| [IRF8](IRF8) | 1, aSHM | Morin et al. 2011; Panea et al. 2019 |
52
+| [ITPKB](ITPKB) | 1 | Schmitz et al. 2018 |
53
+| [KLF2](KLF2) | 1, aSHM | Laura Pasqualucci, Trifonov, et al. 2011 |
54
+| [KLHL6](KLHL6) | 1, aSHM | Panea et al. 2019; Morin et al. 2011 |
55
+| [KMT2D](KMT2D) | 1 | Beà et al. 2013; Morin et al. 2011; Grande et al. 2019 |
56
+| [LTB](LTB) | 1, aSHM | Panea et al. 2019; Chapuy et al. 2018 |
57
+| [MAP2K1](MAP2K1) | 1 | Louissaint et al. 2016; Shin et al. 2015 |
58
+| [MEF2B](MEF2B) | 1, aSHM | Beà et al. 2013; Morin et al. 2011 |
59
+| [MEF2C](MEF2C) | 1, aSHM | Arthur et al. 2018 |
60
+| [PCLO](PCLO) | 1 | Lohr et al. 2012 |
61
+| [PIM1](PIM1) | 1, aSHM | Burkhardt et al. 2022; L. Pasqualucci et al. 2001 |
62
+| [POU2AF1](POU2AF1) | 1 | Krysiak et al. 2017 |
63
+| [POU2F2](POU2F2) | 1 | Krysiak et al. 2017; Zhang et al. 2013 |
64 64
| [PTPRD](PTPRD) | 1 | |
65
-| [RRAGC](RRAGC) | 1 | Okosun et al. 2016 |
66
-| [S1PR2](S1PR2) | 1, aSHM | Muppidi et al. 2014; Morin et al. 2011 |
67
-| [SGK1](SGK1) | 1, aSHM | Morin et al. 2011 |
68
-| [SMARCA4](SMARCA4) | 1 | Nadeu et al. 2020; Zhang et al. 2013; Richter et al. 2012; Krysiak et al. 2017 |
69
-| [SOCS1](SOCS1) | 1, aSHM | Morin et al. 2011 |
70
-| [STAT6](STAT6) | 1 | Yildiz et al. 2015 |
71
-| [TBL1XR1](TBL1XR1) | 1 | Mareschal et al. 2016 |
72
-| [TMSB4X](TMSB4X) | 1, aSHM | Albuquerque et al. 2017 |
73
-| [TNFAIP3](TNFAIP3) | 1 | Compagno et al. 2009 |
74
-| [TNFRSF14](TNFRSF14) | 1 | Cheung et al. 2010 |
75
-| [TP53](TP53) | 1 | Wilda et al. 2004; Beà et al. 2013; Morin et al. 2011 |
76
-| [VMA21](VMA21) | 1 | Hübschmann et al. 2021 |
65
+| [RRAGC](RRAGC) | 1 | Okosun et al. 2016 |
66
+| [S1PR2](S1PR2) | 1, aSHM | Muppidi et al. 2014; Morin et al. 2011 |
67
+| [SGK1](SGK1) | 1, aSHM | Morin et al. 2011 |
68
+| [SMARCA4](SMARCA4) | 1 | Richter et al. 2012; Nadeu et al. 2020; Krysiak et al. 2017; Zhang et al. 2013 |
69
+| [SOCS1](SOCS1) | 1, aSHM | Morin et al. 2011 |
70
+| [STAT6](STAT6) | 1 | Yildiz et al. 2015 |
71
+| [TBL1XR1](TBL1XR1) | 1 | Mareschal et al. 2016 |
72
+| [TMSB4X](TMSB4X) | 1, aSHM | Albuquerque et al. 2017 |
73
+| [TNFAIP3](TNFAIP3) | 1 | Compagno et al. 2009 |
74
+| [TNFRSF14](TNFRSF14) | 1 | Cheung et al. 2010 |
75
+| [TP53](TP53) | 1 | Wilda et al. 2004; Morin et al. 2011; Beà et al. 2013 |
76
+| [VMA21](VMA21) | 1 | Hübschmann et al. 2021 |
77 77
78 78
## Tier 2 FL genes
79 79
80 80
### *50 total*
81 81
82
-| Gene | Tier | Relevant references |
83
-|:----------------------:|:-------:|:------------------------------------------------------------------:|
84
-| [ABL2](ABL2) | 2 | Russler-Germain et al. 2023 |
85
-| [ACTG1](ACTG1) | 2, aSHM | Hübschmann et al. 2021 |
86
-| [ATP6V1A](ATP6V1A) | 2 | Hübschmann et al. 2021 |
87
-| [BCL10](BCL10) | 2 | Russler-Germain et al. 2023; Morin et al. 2011 |
88
-| [CCDC42BPB](CCDC42BPB) | 2 | Hübschmann et al. 2021 |
89
-| [CD70](CD70) | 2 | Morin et al. 2011; Russler-Germain et al. 2023 |
90
-| [CD79B](CD79B) | 2 | Panea et al. 2019; Morin et al. 2011 |
91
-| [CILP](CILP) | 2 | Russler-Germain et al. 2023 |
92
-| [CPNE8](CPNE8) | 2 | Hübschmann et al. 2021 |
93
-| [CXCR4](CXCR4) | 2, aSHM | Panea et al. 2019; Khodabakhshi et al. 2012; Krysiak et al. 2017 |
94
-| [CYP2A6](CYP2A6) | 2 | Russler-Germain et al. 2023 |
95
-| [DDX3X](DDX3X) | 2 | Schmitz et al. 2018, 2012 |
96
-| [DHX15](DHX15) | 2 | Hübschmann et al. 2021 |
97
-| [DUSP2](DUSP2) | 2, aSHM | Morin et al. 2013 |
98
-| [EGR1](EGR1) | 2 | Krysiak et al. 2017 |
99
-| [FZR1](FZR1) | 2 | Hübschmann et al. 2021 |
100
-| [GBP7](GBP7) | 2 | Russler-Germain et al. 2023 |
101
-| [GRM6](GRM6) | 2 | Russler-Germain et al. 2023 |
102
-| [HIST1H2BM](HIST1H2BM) | 2, aSHM | Krysiak et al. 2017 |
103
-| [HIST1H3I](HIST1H3I) | 2, aSHM | Panea et al. 2019; Krysiak et al. 2017 |
82
+| Gene | Tier | Relevant references |
83
+|:----------------------:|:-------:|:-------------------------------------------------------------------|
84
+| [ABL2](ABL2) | 2 | Russler-Germain et al. 2023 |
85
+| [ACTG1](ACTG1) | 2, aSHM | Hübschmann et al. 2021 |
86
+| [ATP6V1A](ATP6V1A) | 2 | Hübschmann et al. 2021 |
87
+| [BCL10](BCL10) | 2 | Morin et al. 2011; Russler-Germain et al. 2023 |
88
+| [CCDC42BPB](CCDC42BPB) | 2 | Hübschmann et al. 2021 |
89
+| [CD70](CD70) | 2 | Russler-Germain et al. 2023; Morin et al. 2011 |
90
+| [CD79B](CD79B) | 2 | Panea et al. 2019; Morin et al. 2011 |
91
+| [CILP](CILP) | 2 | Russler-Germain et al. 2023 |
92
+| [CPNE8](CPNE8) | 2 | Hübschmann et al. 2021 |
93
+| [CXCR4](CXCR4) | 2, aSHM | Khodabakhshi et al. 2012; Panea et al. 2019; Krysiak et al. 2017 |
94
+| [CYP2A6](CYP2A6) | 2 | Russler-Germain et al. 2023 |
95
+| [DDX3X](DDX3X) | 2 | Schmitz et al. 2012, 2018 |
96
+| [DHX15](DHX15) | 2 | Hübschmann et al. 2021 |
97
+| [DUSP2](DUSP2) | 2, aSHM | Morin et al. 2013 |
98
+| [EGR1](EGR1) | 2 | Krysiak et al. 2017 |
99
+| [FZR1](FZR1) | 2 | Hübschmann et al. 2021 |
100
+| [GBP7](GBP7) | 2 | Russler-Germain et al. 2023 |
101
+| [GRM6](GRM6) | 2 | Russler-Germain et al. 2023 |
102
+| [HIST1H2BM](HIST1H2BM) | 2, aSHM | Krysiak et al. 2017 |
103
+| [HIST1H3I](HIST1H3I) | 2, aSHM | Panea et al. 2019; Krysiak et al. 2017 |
104 104
| [HLA-B](HLA-B) | 2 | |
105 105
| [HNRNPD](HNRNPD) | 2 | |
106
-| [IGLL5](IGLL5) | 2, aSHM | Panea et al. 2019; Russler-Germain et al. 2023 |
107
-| [JUP](JUP) | 2 | Hübschmann et al. 2021 |
108
-| [KIR3DL1](KIR3DL1) | 2 | Russler-Germain et al. 2023 |
109
-| [LAPTM5](LAPTM5) | 2 | Hübschmann et al. 2021 |
110
-| [MAGEC1](MAGEC1) | 2 | Russler-Germain et al. 2023 |
111
-| [MAP7D1](MAP7D1) | 2 | Russler-Germain et al. 2023 |
112
-| [MGEA5](MGEA5) | 2 | Hübschmann et al. 2021 |
113
-| [MKI67](MKI67) | 2 | Russler-Germain et al. 2023; Schmitz et al. 2012 |
114
-| [MYC](MYC) | 2, aSHM | Johnston and Carroll 1992; L. Pasqualucci et al. 2001 |
115
-| [MYCBP2](MYCBP2) | 2 | Hübschmann et al. 2021 |
116
-| [MYD88](MYD88) | 2 | Ngo et al. 2011 |
117
-| [NFKBIA](NFKBIA) | 2 | Lake et al. 2009; Russler-Germain et al. 2023 |
118
-| [OR8H2](OR8H2) | 2 | Russler-Germain et al. 2023 |
119
-| [P2RY8](P2RY8) | 2 | Muppidi et al. 2014; Lohr et al. 2012 |
120
-| [PDS5B](PDS5B) | 2 | Morin et al. 2013; Hübschmann et al. 2021 |
121
-| [PPP4C](PPP4C) | 2 | Hübschmann et al. 2021 |
122
-| [PRKDC](PRKDC) | 2 | Hübschmann et al. 2021; Schmitz et al. 2018 |
123
-| [PZP](PZP) | 2 | Russler-Germain et al. 2023 |
124
-| [RBM6](RBM6) | 2 | Hübschmann et al. 2021 |
125
-| [SESN1](SESN1) | 2 | Oricchio et al. 2017 |
126
-| [SHROOM3](SHROOM3) | 2 | Russler-Germain et al. 2023 |
127
-| [SRRM2](SRRM2) | 2 | Russler-Germain et al. 2023; Morin et al. 2013 |
128
-| [STAB2](STAB2) | 2 | Russler-Germain et al. 2023 |
129
-| [TMEM30A](TMEM30A) | 2 | Morin et al. 2011 |
130
-| [TPP1](TPP1) | 2 | Hübschmann et al. 2021 |
131
-| [XIRP2](XIRP2) | 2 | Russler-Germain et al. 2023 |
132
-| [ZC3H12A](ZC3H12A) | 2 | Arthur et al. 2018 |
133
-| [ZNF608](ZNF608) | 2 | Zhang et al. 2013; Krysiak et al. 2017 |
106
+| [IGLL5](IGLL5) | 2, aSHM | Panea et al. 2019; Russler-Germain et al. 2023 |
107
+| [JUP](JUP) | 2 | Hübschmann et al. 2021 |
108
+| [KIR3DL1](KIR3DL1) | 2 | Russler-Germain et al. 2023 |
109
+| [LAPTM5](LAPTM5) | 2 | Hübschmann et al. 2021 |
110
+| [MAGEC1](MAGEC1) | 2 | Russler-Germain et al. 2023 |
111
+| [MAP7D1](MAP7D1) | 2 | Russler-Germain et al. 2023 |
112
+| [MGEA5](MGEA5) | 2 | Hübschmann et al. 2021 |
113
+| [MKI67](MKI67) | 2 | Russler-Germain et al. 2023; Schmitz et al. 2012 |
114
+| [MYC](MYC) | 2, aSHM | Johnston and Carroll 1992; L. Pasqualucci et al. 2001 |
115
+| [MYCBP2](MYCBP2) | 2 | Hübschmann et al. 2021 |
116
+| [MYD88](MYD88) | 2 | Ngo et al. 2011 |
117
+| [NFKBIA](NFKBIA) | 2 | Russler-Germain et al. 2023; Lake et al. 2009 |
118
+| [OR8H2](OR8H2) | 2 | Russler-Germain et al. 2023 |
119
+| [P2RY8](P2RY8) | 2 | Muppidi et al. 2014; Lohr et al. 2012 |
120
+| [PDS5B](PDS5B) | 2 | Morin et al. 2013; Hübschmann et al. 2021 |
121
+| [PPP4C](PPP4C) | 2 | Hübschmann et al. 2021 |
122
+| [PRKDC](PRKDC) | 2 | Hübschmann et al. 2021; Schmitz et al. 2018 |
123
+| [PZP](PZP) | 2 | Russler-Germain et al. 2023 |
124
+| [RBM6](RBM6) | 2 | Hübschmann et al. 2021 |
125
+| [SESN1](SESN1) | 2 | Oricchio et al. 2017 |
126
+| [SHROOM3](SHROOM3) | 2 | Russler-Germain et al. 2023 |
127
+| [SRRM2](SRRM2) | 2 | Russler-Germain et al. 2023; Morin et al. 2013 |
128
+| [STAB2](STAB2) | 2 | Russler-Germain et al. 2023 |
129
+| [TMEM30A](TMEM30A) | 2 | Morin et al. 2011 |
130
+| [TPP1](TPP1) | 2 | Hübschmann et al. 2021 |
131
+| [XIRP2](XIRP2) | 2 | Russler-Germain et al. 2023 |
132
+| [ZC3H12A](ZC3H12A) | 2 | Arthur et al. 2018 |
133
+| [ZNF608](ZNF608) | 2 | Krysiak et al. 2017; Zhang et al. 2013 |
134 134
135 135
# References
136 136
MCL_genes.md
... ...
@@ -6,84 +6,84 @@
6 6
7 7
### *23 total*
8 8
9
-| Gene | Tier | Relevant references |
10
-|:------------------:|:------------:|:--------------------------------------------------------------------------------:|
11
-| [ATM](ATM) | 1 | Beà et al. 2013; Reddy et al. 2017 |
12
-| [BIRC3](BIRC3) | 1 | Beà et al. 2013; Arthur et al. 2018 |
13
-| [CARD11](CARD11) | 1 | Panea et al. 2019; Lenz et al. 2008; Morin et al. 2011; Wu et al. 2016 |
14
-| [CCND1](CCND1) | 1, aSHM | Beà et al. 2013 |
15
-| [DAZAP1](DAZAP1) | 1 | Pararajalingam et al. 2020 |
16
-| [EWSR1](EWSR1) | 1 | Pararajalingam et al. 2020 |
17
-| [HNRNPH1](HNRNPH1) | 1, noncoding | Pararajalingam et al. 2020 |
18
-| [KMT2D](KMT2D) | 1 | Morin et al. 2011; Beà et al. 2013; Grande et al. 2019 |
19
-| [MEF2B](MEF2B) | 1 | Beà et al. 2013; Morin et al. 2011 |
20
-| [NFKBIE](NFKBIE) | 1 | Pararajalingam et al. 2020; Morin et al. 2016 |
21
-| [NOTCH1](NOTCH1) | 1 | Pasqualucci et al. 2011; Love et al. 2012; Beà et al. 2013 |
22
-| [NOTCH2](NOTCH2) | 1 | Beà et al. 2013; Panea et al. 2019; Trøen et al. 2008 |
23
-| [NSD2](NSD2) | 1 | Beà et al. 2013 |
24
-| [POT1](POT1) | 1 | Zhang et al. 2014 |
25
-| [RB1](RB1) | 1 | Zhang et al. 2014; Morin et al. 2013 |
26
-| [S1PR1](S1PR1) | 1 | Pararajalingam et al. 2020 |
27
-| [SMARCA4](SMARCA4) | 1 | Richter et al. 2012; Krysiak et al. 2017; Zhang et al. 2013; Nadeu et al. 2020 |
28
-| [SP140](SP140) | 1 | Beà et al. 2013 |
29
-| [SYNE1](SYNE1) | 1 | Nadeu et al. 2020 |
30
-| [TERT](TERT) | 1, noncoding | Nadeu et al. 2020 |
31
-| [TLR2](TLR2) | 1 | Beà et al. 2013; Chapuy et al. 2018 |
32
-| [TP53](TP53) | 1 | Morin et al. 2011; Beà et al. 2013; Wilda et al. 2004 |
33
-| [UBR5](UBR5) | 1 | Zhang et al. 2013; Pararajalingam et al. 2020 |
9
+| Gene | Tier | Relevant references |
10
+|:------------------:|:------------:|:---------------------------------------------------------------------------------|
11
+| [ATM](ATM) | 1 | Beà et al. 2013; Reddy et al. 2017 |
12
+| [BIRC3](BIRC3) | 1 | Arthur et al. 2018; Beà et al. 2013 |
13
+| [CARD11](CARD11) | 1 | Morin et al. 2011; Lenz et al. 2008; Wu et al. 2016; Panea et al. 2019 |
14
+| [CCND1](CCND1) | 1, aSHM | Beà et al. 2013 |
15
+| [DAZAP1](DAZAP1) | 1 | Pararajalingam et al. 2020 |
16
+| [EWSR1](EWSR1) | 1 | Pararajalingam et al. 2020 |
17
+| [HNRNPH1](HNRNPH1) | 1, noncoding | Pararajalingam et al. 2020 |
18
+| [KMT2D](KMT2D) | 1 | Grande et al. 2019; Morin et al. 2011; Beà et al. 2013 |
19
+| [MEF2B](MEF2B) | 1 | Morin et al. 2011; Beà et al. 2013 |
20
+| [NFKBIE](NFKBIE) | 1 | Pararajalingam et al. 2020; Morin et al. 2016 |
21
+| [NOTCH1](NOTCH1) | 1 | Pasqualucci et al. 2011; Love et al. 2012; Beà et al. 2013 |
22
+| [NOTCH2](NOTCH2) | 1 | Beà et al. 2013; Trøen et al. 2008; Panea et al. 2019 |
23
+| [NSD2](NSD2) | 1 | Beà et al. 2013 |
24
+| [POT1](POT1) | 1 | Zhang et al. 2014 |
25
+| [RB1](RB1) | 1 | Morin et al. 2013; Zhang et al. 2014 |
26
+| [S1PR1](S1PR1) | 1 | Pararajalingam et al. 2020 |
27
+| [SMARCA4](SMARCA4) | 1 | Richter et al. 2012; Zhang et al. 2013; Krysiak et al. 2017; Nadeu et al. 2020 |
28
+| [SP140](SP140) | 1 | Beà et al. 2013 |
29
+| [SYNE1](SYNE1) | 1 | Nadeu et al. 2020 |
30
+| [TERT](TERT) | 1, noncoding | Nadeu et al. 2020 |
31
+| [TLR2](TLR2) | 1 | Beà et al. 2013; Chapuy et al. 2018 |
32
+| [TP53](TP53) | 1 | Morin et al. 2011; Wilda et al. 2004; Beà et al. 2013 |
33
+| [UBR5](UBR5) | 1 | Zhang et al. 2013; Pararajalingam et al. 2020 |
34 34
35 35
## Tier 2 MCL genes
36 36
37 37
### *46 total*
38 38
39
-| Gene | Tier | Relevant references |
40
-|:--------------------:|:----:|:--------------------------------------------------------:|
41
-| [ABCA3](ABCA3) | 2 | Beà et al. 2013 |
42
-| [ABCC9](ABCC9) | 2 | Beà et al. 2013 |
43
-| [ANK2](ANK2) | 2 | Zhang et al. 2014 |
44
-| [ARID1B](ARID1B) | 2 | Reddy et al. 2017 |
45
-| [ATP11C](ATP11C) | 2 | Zhang et al. 2014 |
46
-| [B2M](B2M) | 2 | Pararajalingam et al. 2020; Morin et al. 2011 |
47
-| [BCOR](BCOR) | 2 | Nadeu et al. 2020 |
48
-| [CDH8](CDH8) | 2 | Zhang et al. 2014 |
49
-| [CHMP4C](CHMP4C) | 2 | Beà et al. 2013 |
50
-| [COL11A1](COL11A1) | 2 | Zhang et al. 2014 |
51
-| [COL16A1](COL16A1) | 2 | Zhang et al. 2014 |
52
-| [CRYBG3](CRYBG3) | 2 | Beà et al. 2013 |
53
-| [CTNNA2](CTNNA2) | 2 | Zhang et al. 2014 |
54
-| [DCP1B](DCP1B) | 2 | Beà et al. 2013 |
55
-| [DHDH](DHDH) | 2 | Zhang et al. 2014 |
56
-| [DLC1](DLC1) | 2 | Zhang et al. 2014 |
57
-| [DLGAP2](DLGAP2) | 2 | Beà et al. 2013 |
58
-| [DNAJC6](DNAJC6) | 2 | Beà et al. 2013 |
59
-| [EIF2AK4](EIF2AK4) | 2 | Zhang et al. 2014 |
60
-| [ESX1](ESX1) | 2 | Zhang et al. 2014 |
61
-| [FAT4](FAT4) | 2 | Morin et al. 2013; Zhang et al. 2014 |
62
-| [GRIN2A](GRIN2A) | 2 | Zhang et al. 2014 |
63
-| [HEPH](HEPH) | 2 | Zhang et al. 2014 |
64
-| [KCNC2](KCNC2) | 2 | Beà et al. 2013 |
65
-| [KIAA1671](KIAA1671) | 2 | Beà et al. 2013 |
66
-| [KMT2C](KMT2C) | 2 | Zhang et al. 2014; Zhang et al. 2013; Zhou et al. 2019 |
67
-| [LUZP4](LUZP4) | 2 | Beà et al. 2013 |
68
-| [MRGPRF](MRGPRF) | 2 | Zhang et al. 2014 |
69
-| [NIN](NIN) | 2 | Zhang et al. 2014 |
70
-| [OGDHL](OGDHL) | 2 | Zhang et al. 2014 |
71
-| [PCDHB2](PCDHB2) | 2 | Zhang et al. 2014 |
72
-| [PCSK2](PCSK2) | 2 | Beà et al. 2013 |
73
-| [PDLIM3](PDLIM3) | 2 | Beà et al. 2013 |
74
-| [PLXNB3](PLXNB3) | 2 | Zhang et al. 2014 |
75
-| [RGS4](RGS4) | 2 | Beà et al. 2013 |
76
-| [ROBO2](ROBO2) | 2 | Zhang et al. 2014 |
77
-| [SALL3](SALL3) | 2 | Zhang et al. 2014; Love et al. 2012 |
78
-| [SI](SI) | 2 | Zhang et al. 2014 |
79
-| [SLC17A6](SLC17A6) | 2 | Beà et al. 2013 |
80
-| [SMARCB1](SMARCB1) | 2 | Nadeu et al. 2020 |
81
-| [SMC1A](SMC1A) | 2 | Zhang et al. 2014 |
82
-| [TBC1D26](TBC1D26) | 2 | Zhang et al. 2014 |
83
-| [TNRC6B](TNRC6B) | 2 | Beà et al. 2013 |
84
-| [TRPM6](TRPM6) | 2 | Beà et al. 2013 |
85
-| [ZNF117](ZNF117) | 2 | Zhang et al. 2014 |
86
-| [ZNF296](ZNF296) | 2 | Zhang et al. 2014 |
39
+| Gene | Tier | Relevant references |
40
+|:--------------------:|:----:|:---------------------------------------------------------|
41
+| [ABCA3](ABCA3) | 2 | Beà et al. 2013 |
42
+| [ABCC9](ABCC9) | 2 | Beà et al. 2013 |
43
+| [ANK2](ANK2) | 2 | Zhang et al. 2014 |
44
+| [ARID1B](ARID1B) | 2 | Reddy et al. 2017 |
45
+| [ATP11C](ATP11C) | 2 | Zhang et al. 2014 |
46
+| [B2M](B2M) | 2 | Pararajalingam et al. 2020; Morin et al. 2011 |
47
+| [BCOR](BCOR) | 2 | Nadeu et al. 2020 |
48
+| [CDH8](CDH8) | 2 | Zhang et al. 2014 |
49
+| [CHMP4C](CHMP4C) | 2 | Beà et al. 2013 |
50
+| [COL11A1](COL11A1) | 2 | Zhang et al. 2014 |
51
+| [COL16A1](COL16A1) | 2 | Zhang et al. 2014 |
52
+| [CRYBG3](CRYBG3) | 2 | Beà et al. 2013 |
53
+| [CTNNA2](CTNNA2) | 2 | Zhang et al. 2014 |
54
+| [DCP1B](DCP1B) | 2 | Beà et al. 2013 |
55
+| [DHDH](DHDH) | 2 | Zhang et al. 2014 |
56
+| [DLC1](DLC1) | 2 | Zhang et al. 2014 |
57
+| [DLGAP2](DLGAP2) | 2 | Beà et al. 2013 |
58
+| [DNAJC6](DNAJC6) | 2 | Beà et al. 2013 |
59
+| [EIF2AK4](EIF2AK4) | 2 | Zhang et al. 2014 |
60
+| [ESX1](ESX1) | 2 | Zhang et al. 2014 |
61
+| [FAT4](FAT4) | 2 | Zhang et al. 2014; Morin et al. 2013 |
62
+| [GRIN2A](GRIN2A) | 2 | Zhang et al. 2014 |
63
+| [HEPH](HEPH) | 2 | Zhang et al. 2014 |
64
+| [KCNC2](KCNC2) | 2 | Beà et al. 2013 |
65
+| [KIAA1671](KIAA1671) | 2 | Beà et al. 2013 |
66
+| [KMT2C](KMT2C) | 2 | Zhang et al. 2013; Zhou et al. 2019; Zhang et al. 2014 |
67
+| [LUZP4](LUZP4) | 2 | Beà et al. 2013 |
68
+| [MRGPRF](MRGPRF) | 2 | Zhang et al. 2014 |
69
+| [NIN](NIN) | 2 | Zhang et al. 2014 |
70
+| [OGDHL](OGDHL) | 2 | Zhang et al. 2014 |
71
+| [PCDHB2](PCDHB2) | 2 | Zhang et al. 2014 |
72
+| [PCSK2](PCSK2) | 2 | Beà et al. 2013 |
73
+| [PDLIM3](PDLIM3) | 2 | Beà et al. 2013 |
74
+| [PLXNB3](PLXNB3) | 2 | Zhang et al. 2014 |
75
+| [RGS4](RGS4) | 2 | Beà et al. 2013 |
76
+| [ROBO2](ROBO2) | 2 | Zhang et al. 2014 |
77
+| [SALL3](SALL3) | 2 | Love et al. 2012; Zhang et al. 2014 |
78
+| [SI](SI) | 2 | Zhang et al. 2014 |
79
+| [SLC17A6](SLC17A6) | 2 | Beà et al. 2013 |
80
+| [SMARCB1](SMARCB1) | 2 | Nadeu et al. 2020 |
81
+| [SMC1A](SMC1A) | 2 | Zhang et al. 2014 |
82
+| [TBC1D26](TBC1D26) | 2 | Zhang et al. 2014 |
83
+| [TNRC6B](TNRC6B) | 2 | Beà et al. 2013 |
84
+| [TRPM6](TRPM6) | 2 | Beà et al. 2013 |
85
+| [ZNF117](ZNF117) | 2 | Zhang et al. 2014 |
86
+| [ZNF296](ZNF296) | 2 | Zhang et al. 2014 |
87 87
88 88
# References
89 89