DLBCL genes
Origins of DLBCL genes
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Morin 2013, DLBCL Tier 1, 11
Morin 2013, DLBCL Tier 2, 29
Morin 2016, DLBCL Tier 1, 2
Mareschal 2016, DLBCL Tier 1, 2
Arthur 2018, DLBCL Tier 1, 8
Arthur 2018, DLBCL Tier 2, 12
Pasqualucci 2001, DLBCL Tier 1, 2
Pasqualucci 2001, DLBCL Tier 2, 2
Albuquerque 2017, DLBCL Tier 1, 3
Lohr 2012, DLBCL Tier 1, 3
Lohr 2012, DLBCL Tier 2, 1
Schmitz 2018, DLBCL Tier 1, 7
Schmitz 2018, DLBCL Tier 2, 9
Zhang 2013, DLBCL Tier 1, 11
Zhang 2013, DLBCL Tier 2, 8
Morin 2011, DLBCL Tier 1, 24
Morin 2011, DLBCL Tier 2, 1
Reddy 2017, DLBCL Tier 1, 7
Reddy 2017, DLBCL Tier 2, 53
Pasqualucci 2011, DLBCL Tier 1, 3
Pasqualucci 2011, DLBCL Tier 2, 4
Chapuy 2018, DLBCL Tier 1, 2
Chapuy 2018, DLBCL Tier 2, 17
Pasqualucci 2011, DLBCL Tier 1, 2
Hubschmann 2021, DLBCL Tier 1, 3
Hubschmann 2021, DLBCL Tier 2, 20
Pararajalingam 2020, DLBCL Tier 2, 2
DLBCL, Sanger, 4
Sanger, Pasqualucci 2001, 4
DLBCL, exome, 2
exome, Mareschal 2016, 2
DLBCL, WGS, 20
WGS, Arthur 2018, 20
DLBCL, exome, 2
exome, Morin 2016, 2
DLBCL, WGS, 40
WGS, Morin 2013, 40
DLBCL, exome, 3
exome, Albuquerque 2017, 3
DLBCL, exome, 4
exome, Lohr 2012, 4
DLBCL, exome, 60
exome, Reddy 2017, 60
DLBCL, exome, 16
exome, Schmitz 2018, 16
DLBCL, exome, 19
exome, Zhang 2013, 19
DLBCL, RNA-seq/WGS, 25
RNA-seq/WGS, Morin 2011, 25
DLBCL, exome, 2
exome, Pasqualucci 2011, 2
DLBCL, WGS/exome, 2
WGS/exome, Pararajalingam 2020, 2
DLBCL, WGS, 23
WGS, Hubschmann 2021, 23
DLBCL, exome, 19
exome, Chapuy 2018, 19
DLBCL, exome, 7
exome, Pasqualucci 2011, 7
Tier 1 DLBCL genes
128 total
| Gene | Tier | Relevant references |
|---|---|---|
| ACTB | 1, aSHM | Wienand et al. 2019; Lohr et al. 2012 |
| ACTG1 | 1, aSHM | Spina et al. 2016; Desch et al. 2020; Hübschmann et al. 2021 |
| ARID1A | 1 | Rossi et al. 2012; Wienand et al. 2019; Love et al. 2012; Zhang et al. 2013; Krysiak et al. 2017 |
| ATM | 1 | Braggio et al. 2012; Beà et al. 2013; Reddy et al. 2017 |
| B2M | 1 | Pararajalingam et al. 2020; Reichel et al. 2015; Morin et al. 2011 |
| BCL10 | 1 | Morin et al. 2011; Russler-Germain et al. 2023; Spina et al. 2016 |
| BCL2 | 1, aSHM | Sarkozy et al. 2021; Tanaka et al. 1992; Burkhardt et al. 2022; Morin et al. 2011 |
| BCL6 | 1, aSHM | Morin et al. 2011; Love et al. 2012 |
| BCL7A | 1, aSHM | Reichel et al. 2015; Krysiak et al. 2017; Arthur et al. 2018; Grande et al. 2019 |
| BIRC6 | 1 | Reddy et al. 2017; Sarkozy et al. 2021 |
| BRAF | 1 | Love et al. 2012; Tiacci et al. 2011 |
| BTG1 | 1, aSHM | Morin et al. 2011; Burkhardt et al. 2022; Sarkozy et al. 2021 |
| BTG2 | 1, aSHM | Morin et al. 2011; Love et al. 2012 |
| BTK | 1 | Krysiak et al. 2017; Albuquerque et al. 2017 |
| CARD11 | 1 | Wu et al. 2016; Panea et al. 2019; Lenz et al. 2008; Yan et al. 2012; Morin et al. 2011 |
| CCND3 | 1 | Jallades et al. 2017; Richter et al. 2012; Desch et al. 2020; Morin et al. 2011 |
| CD58 | 1 | Morin et al. 2011; Schneider et al. 2015 |
| CD70 | 1 | Russler-Germain et al. 2023; Morin et al. 2011 |
| CD79B | 1 | Morin et al. 2011; Panea et al. 2019 |
| CD83 | 1, aSHM | Russler-Germain et al. 2023; Morin et al. 2013; Duns et al. 2021; Panea et al. 2019 |
| CDKN2A | 1 | Grande et al. 2019; Spina et al. 2016; Morin et al. 2013 |
| CIITA | 1, aSHM | Mottok et al. 2015; Morin et al. 2011 |
| CREBBP | 1 | Duns et al. 2021; Laura Pasqualucci, Dominguez-Sola, et al. 2011; Love et al. 2012; Parry et al. 2013 |
| CXCR4 | 1, aSHM | Khodabakhshi et al. 2012; Panea et al. 2019; Krysiak et al. 2017 |
| CXCR5 | 1 | Schmitz et al. 2018; Mottok et al. 2019 |
| DDX3X | 1 | Schmitz et al. 2012, 2018; Mottok et al. 2019 |
| DTX1 | 1, aSHM | Panea et al. 2019; Gomez et al. 2023; Schmitz et al. 2018; Rossi et al. 2012 |
| DUSP2 | 1, aSHM | Duns et al. 2021; Morin et al. 2013 |
| EBF1 | 1, aSHM | Reichel et al. 2015; Bohle et al. 2013; Thomas et al. 2023 |
| EEF1A1 | 1 | Hübschmann et al. 2021; Reichel et al. 2015 |
| EP300 | 1 | Rossi et al. 2012; Panea et al. 2019; Laura Pasqualucci, Dominguez-Sola, et al. 2011 |
| ETS1 | 1, aSHM | Panea et al. 2019; Morin et al. 2011 |
| ETV6 | 1, aSHM | Arthur et al. 2018 |
| EZH2 | 1 | Morin et al. 2010; Mottok et al. 2019; Love et al. 2012 |
| FAS | 1 | Scholl et al. 2007; Spina et al. 2016 |
| FBXO11 | 1 | Richter et al. 2012; Hübschmann et al. 2021; Parry et al. 2013 |
| FBXW7 | 1 | Zhang et al. 2013 |
| FOXO1 | 1 | Schmitz et al. 2012; Morin et al. 2011; Duns et al. 2021 |
| GNA13 | 1 | Love et al. 2012; Morin et al. 2011; Reichel et al. 2015 |
| GNAI2 | 1 | Grande et al. 2019; Morin et al. 2013 |
| GRB2 | 1 | Panea et al. 2019; Laura Pasqualucci, Trifonov, et al. 2011 |
| GRHPR | 1, aSHM | Arthur et al. 2018 |
| HIST1H1B | 1, aSHM | Krysiak et al. 2017; Sarkozy et al. 2021; Chapuy et al. 2018 |
| HIST1H1C | 1, aSHM | Morin et al. 2011; Panea et al. 2019 |
| HIST1H1D | 1, aSHM | Krysiak et al. 2017; Jallades et al. 2017; Morin et al. 2013 |
| HIST1H1E | 1, aSHM | Morin et al. 2013; Reichel et al. 2015; Grande et al. 2019; Krysiak et al. 2017 |
| HIST1H2AC | 1, aSHM | Krysiak et al. 2017; Morin et al. 2013 |
| HIST1H2AM | 1, aSHM | Panea et al. 2019; Krysiak et al. 2017 |
| HIST1H2BC | 1, aSHM | Krysiak et al. 2017; Mottok et al. 2019; Reddy et al. 2017 |
| HIST1H2BK | 1, aSHM | Panea et al. 2019; Rossi et al. 2012 |
| HIST1H3B | 1, aSHM | Zhang et al. 2013; Reichel et al. 2015 |
| HIST2H2BE | 1, aSHM | Schmitz et al. 2018 |
| HLA-A | 1 | Desch et al. 2020 |
| HLA-B | 1 | Wienand et al. 2019 |
| HLA-C | 1 | Gomez et al. 2023 |
| HLA-DMB | 1 | |
| HNRNPU | 1, aSHM | Panea et al. 2019; Reddy et al. 2017 |
| HVCN1 | 1 | Krysiak et al. 2017 |
| IKZF3 | 1 | Morin et al. 2013; Panea et al. 2019 |
| IL4R | 1, aSHM | Duns et al. 2021; Viganò et al. 2018 |
| IRF4 | 1, aSHM | Mottok et al. 2019; Morin et al. 2011 |
| IRF8 | 1, aSHM | Panea et al. 2019; Morin et al. 2011; Mottok et al. 2019 |
| ITPKB | 1, aSHM | Schmitz et al. 2018; Reichel et al. 2015 |
| KLF2 | 1, aSHM | Desch et al. 2020; Jallades et al. 2017; Laura Pasqualucci, Trifonov, et al. 2011 |
| KLHL14 | 1 | Zhang et al. 2013 |
| KLHL6 | 1, aSHM | Panea et al. 2019; Ganapathi et al. 2016; Morin et al. 2011 |
| KMT2C | 1 | Zhang et al. 2014; Sarkozy et al. 2021; Zhou et al. 2019; Zhang et al. 2013 |
| KMT2D | 1 | Desch et al. 2020; Rossi et al. 2012; Grande et al. 2019; Morin et al. 2011; Beà et al. 2013 |
| KRAS | 1 | Lohr et al. 2012 |
| LCOR | 1 | Arthur et al. 2018 |
| LTB | 1, aSHM | Desch et al. 2020; Chapuy et al. 2018; Panea et al. 2019 |
| MEF2B | 1, aSHM | Beà et al. 2013; Morin et al. 2011 |
| MEF2C | 1, aSHM | Arthur et al. 2018 |
| MGA | 1 | Jallades et al. 2017; Zhang et al. 2013 |
| MPEG1 | 1 | Morin et al. 2013 |
| MS4A1 | 1, aSHM | Rushton et al. 2020; Mottok et al. 2019 |
| MTOR | 1 | Zhang et al. 2013; Panea et al. 2019 |
| MYC | 1, aSHM | L. Pasqualucci et al. 2001; Jallades et al. 2017; Duns et al. 2021; Johnston and Carroll 1992 |
| MYD88 | 1 | Yan et al. 2012; Ngo et al. 2011 |
| NFKBIA | 1 | Lake et al. 2009; Wienand et al. 2019; Russler-Germain et al. 2023 |
| NFKBIE | 1 | Morin et al. 2016; Pararajalingam et al. 2020; Mansouri et al. 2016 |
| NFKBIZ | 1, noncoding | Morin et al. 2016 |
| NOL9 | 1, aSHM | Spina et al. 2016; Schmitz et al. 2018 |
| NOTCH1 | 1 | Beà et al. 2013; Laura Pasqualucci, Trifonov, et al. 2011; Love et al. 2012; Rossi et al. 2012 |
| NOTCH2 | 1 | Rossi et al. 2012; Panea et al. 2019; Beà et al. 2013; Trøen et al. 2008 |
| OSBPL10 | 1, aSHM | Arthur et al. 2018 |
| P2RY8 | 1 | Muppidi et al. 2014; Lohr et al. 2012 |
| PIM1 | 1, aSHM | L. Pasqualucci et al. 2001; Duns et al. 2021; Burkhardt et al. 2022 |
| PIM2 | 1, aSHM | Arthur et al. 2018; Reichel et al. 2015 |
| POU2AF1 | 1, aSHM | Krysiak et al. 2017 |
| POU2F2 | 1 | Krysiak et al. 2017; Zhang et al. 2013 |
| PRDM1 | 1 | Laura Pasqualucci et al. 2006 |
| PTEN | 1 | Love et al. 2012 |
| PTPRD | 1 | Spina et al. 2016 |
| RB1 | 1 | Zhang et al. 2014; Morin et al. 2013 |
| RFX7 | 1 | Grande et al. 2019 |
| RHOA | 1 | Richter et al. 2012 |
| RRAGC | 1 | Okosun et al. 2016 |
| S1PR2 | 1, aSHM | Morin et al. 2011; Muppidi et al. 2014 |
| SETD1B | 1 | Reddy et al. 2017 |
| SF3B1 | 1 | Love et al. 2012 |
| SGK1 | 1, aSHM | Duns et al. 2021; Morin et al. 2011 |
| SIN3A | 1 | Grande et al. 2019; Rossi et al. 2012 |
| SMARCA4 | 1 | Zhang et al. 2013; Nadeu et al. 2020; Krysiak et al. 2017; Richter et al. 2012 |
| SOCS1 | 1, aSHM | Weniger et al. 2006; Morin et al. 2011 |
| SPEN | 1 | Sarkozy et al. 2021; Rossi et al. 2012 |
| STAT3 | 1 | Ohgami et al. 2014 |
| STAT6 | 1 | Yildiz et al. 2015; Ritz et al. 2009 |
| TAF1 | 1 | Spina et al. 2016; Morin et al. 2013 |
| TBL1XR1 | 1 | Rossi et al. 2012; Mareschal et al. 2016 |
| TET2 | 1 | Albuquerque et al. 2017; Panea et al. 2019 |
| TMEM30A | 1 | Morin et al. 2011 |
| TMSB4X | 1, aSHM | Albuquerque et al. 2017 |
| TNFAIP3 | 1 | Schmitz et al. 2009; Rossi et al. 2011; Compagno et al. 2009 |
| TNFRSF14 | 1 | Cheung et al. 2010; Spina et al. 2016 |
| TOX | 1 | Reddy et al. 2017 |
| TP53 | 1 | Wilda et al. 2004; Rossi et al. 2012; Tiacci et al. 2018; Beà et al. 2013; Morin et al. 2011 |
| TRRAP | 1 | Rossi et al. 2012; Parry et al. 2013 |
| UBE2A | 1 | Reddy et al. 2017; Reichel et al. 2015 |
| UNC5C | 1 | |
| USP7 | 1 | Grande et al. 2019 |
| VPS13B | 1 | |
| WEE1 | 1 | Schmitz et al. 2018; Reichel et al. 2015 |
| XPO1 | 1 | Jardin et al. 2016; Mareschal et al. 2016 |
| ZC3H12A | 1 | Arthur et al. 2018 |
| ZFP36L1 | 1, aSHM | Morin et al. 2011; Reichel et al. 2015; Panea et al. 2019 |
| ZNF292 | 1 | Zhang et al. 2013 |
| ZNF608 | 1, aSHM | Zhang et al. 2013; Krysiak et al. 2017 |
Tier 2 DLBCL genes
198 total
| Gene | Tier | Relevant references |
|---|---|---|
| ABI3BP | 2 | Morin et al. 2013 |
| ADAMTS1 | 2 | Hübschmann et al. 2021 |
| AICDA | 2, aSHM | Arthur et al. 2018 |
| ANKRD12 | 2 | Hübschmann et al. 2021 |
| ANKRD17 | 2 | Reddy et al. 2017 |
| ARID1B | 2 | Reddy et al. 2017 |
| ARID5B | 2 | Reddy et al. 2017; Gomez et al. 2023 |
| ATR | 2 | Reddy et al. 2017 |
| BCL11A | 2, aSHM | |
| BCOR | 2 | Nadeu et al. 2020; Jallades et al. 2017 |
| BCR | 2, aSHM | |
| BIRC3 | 2, aSHM | Duns et al. 2021; Rossi et al. 2011; Arthur et al. 2018; Beà et al. 2013 |
| BLK | 2, aSHM | |
| BRINP3 | 2 | Reddy et al. 2017 |
| BTBD3 | 2 | Reddy et al. 2017 |
| CADPS2 | 2 | Hübschmann et al. 2021 |
| CASP8 | 2 | Reddy et al. 2017 |
| CBLB | 2 | Reddy et al. 2017 |
| CCL4 | 2 | Chapuy et al. 2018 |
| CD22 | 2 | Reddy et al. 2017 |
| CD274 | 2 | Morin et al. 2011 |
| CD36 | 2 | Laura Pasqualucci, Trifonov, et al. 2011 |
| CD44 | 2, aSHM | Arthur et al. 2018 |
| CD74 | 2, aSHM | Arthur et al. 2018 |
| CDC73 | 2 | Reddy et al. 2017; Love et al. 2012 |
| CDH9 | 2 | Morin et al. 2013 |
| CHD1 | 2 | Reddy et al. 2017 |
| CHD8 | 2 | Grande et al. 2019; Reddy et al. 2017 |
| CHST2 | 2 | Reddy et al. 2017 |
| CNOT2 | 2 | Hübschmann et al. 2021 |
| CNTNAP5 | 2 | Morin et al. 2013 |
| COQ7 | 2 | Chapuy et al. 2018 |
| CRIP1 | 2 | Chapuy et al. 2018 |
| DAZAP1 | 2 | Pararajalingam et al. 2020 |
| DCAF6 | 2 | Reddy et al. 2017 |
| DDX10 | 2 | Reddy et al. 2017 |
| DHX16 | 2 | Hübschmann et al. 2021 |
| DICER1 | 2 | Reddy et al. 2017 |
| DNAH5 | 2 | Morin et al. 2013; Jallades et al. 2017 |
| DNM2 | 2 | Hübschmann et al. 2021 |
| DNMT3A | 2 | Reddy et al. 2017 |
| DOCK1 | 2 | Chapuy et al. 2018 |
| DSG4 | 2 | Morin et al. 2013 |
| EIF2AK3 | 2, aSHM | |
| EZR | 2, aSHM | Desch et al. 2020 |
| FAM102A | 2, aSHM | |
| FAM38B | 2 | Morin et al. 2013 |
| FANK1 | 2, aSHM | |
| FAT4 | 2 | Parry et al. 2013; Morin et al. 2013; Zhang et al. 2014 |
| FCRL3 | 2, aSHM | |
| FNBP1 | 2, aSHM | |
| FNDC1 | 2 | Morin et al. 2013 |
| FOXC1 | 2 | Schmitz et al. 2018 |
| FOXP1 | 2, aSHM | Reddy et al. 2017 |
| FUBP1 | 2 | Reddy et al. 2017 |
| FUT5 | 2 | Chapuy et al. 2018 |
| GABRA2 | 2 | Chapuy et al. 2018 |
| GAK | 2 | Hübschmann et al. 2021 |
| GNAS | 2 | Reddy et al. 2017 |
| GOLGA5 | 2 | Reddy et al. 2017 |
| GPC5 | 2 | Schmitz et al. 2018 |
| GSG2 | 2 | Schmitz et al. 2018 |
| HDAC7 | 2 | Morin et al. 2013 |
| HIST1H2AG | 2, aSHM | Morin et al. 2013; Rossi et al. 2012; Panea et al. 2019; Krysiak et al. 2017 |
| HLA-DMA | 2 | |
| HLA-DQA1 | 2 | Hübschmann et al. 2021 |
| HNF1B | 2 | Laura Pasqualucci, Trifonov, et al. 2011 |
| HNRNPD | 2 | |
| HNRNPH1 | 2, noncoding | Pararajalingam et al. 2020 |
| HRAS | 2 | Jallades et al. 2017; Reddy et al. 2017 |
| ID3 | 2 | Richter et al. 2012; Spina et al. 2016; Schmitz et al. 2012 |
| IER2 | 2 | Morin et al. 2013 |
| IFNGR1 | 2 | Morin et al. 2013 |
| IGLL5 | 2, aSHM | Russler-Germain et al. 2023; Desch et al. 2020; Panea et al. 2019 |
| IKBKB | 2 | Reddy et al. 2017; Rossi et al. 2011; Wienand et al. 2019 |
| IKBKE | 2 | Hübschmann et al. 2021 |
| IL16 | 2 | |
| IL6 | 2 | Chapuy et al. 2018 |
| INO80 | 2 | Zhang et al. 2013 |
| IRAG2 | 2, aSHM | |
| IRF1 | 2, aSHM | Hübschmann et al. 2021 |
| JAK1 | 2 | Zhang et al. 2013; Mottok et al. 2019 |
| JAK3 | 2 | Zhang et al. 2013 |
| JUNB | 2 | Reddy et al. 2017; Mottok et al. 2019 |
| KCMF1 | 2 | Reddy et al. 2017 |
| KLHL21 | 2 | Schmitz et al. 2018 |
| LAMA5 | 2 | Schmitz et al. 2018 |
| LAPTM5 | 2, aSHM | Hübschmann et al. 2021 |
| LIN54 | 2 | Reddy et al. 2017 |
| LPP | 2, aSHM | Arthur et al. 2018 |
| LRP12 | 2 | Hübschmann et al. 2021 |
| LRRN3 | 2 | Sarkozy et al. 2021; Morin et al. 2013 |
| LYN | 2 | Chapuy et al. 2018 |
| MAGT1 | 2 | Reddy et al. 2017 |
| MALAT1 | 2, aSHM | Arthur et al. 2018 |
| MAP2K1 | 2 | Shin et al. 2015; Louissaint et al. 2016 |
| MAP4K4 | 2 | Reddy et al. 2017 |
| MARK1 | 2 | Reddy et al. 2017 |
| MCL1 | 2 | Panea et al. 2019; Reddy et al. 2017; Duns et al. 2021 |
| MECOM | 2 | Reddy et al. 2017 |
| MET | 2 | Reddy et al. 2017 |
| MIR142 | 2, aSHM | Grande et al. 2019; Kwanhian et al. 2012 |
| MIR155HG | 2, aSHM | |
| MPDZ | 2 | Reichel et al. 2015; Morin et al. 2013 |
| MSH2 | 2 | Reddy et al. 2017 |
| MSH6 | 2 | Reddy et al. 2017 |
| MYB | 2 | Reddy et al. 2017; Desch et al. 2020 |
| MYBPC2 | 2 | Schmitz et al. 2018 |
| MYO1E | 2, aSHM | |
| MYOM2 | 2 | Laura Pasqualucci, Trifonov, et al. 2011 |
| N2RF2 | 2 | Hübschmann et al. 2021 |
| NANOG | 2 | Chapuy et al. 2018 |
| NAV1 | 2 | Chapuy et al. 2018 |
| NCOA3 | 2, aSHM | |
| NCOR1 | 2 | Reddy et al. 2017 |
| NCOR2 | 2 | Schmitz et al. 2012; Spina et al. 2016; Sarkozy et al. 2021 |
| NEAT1 | 2, aSHM | Arthur et al. 2018 |
| NF1 | 2 | Reddy et al. 2017 |
| NFKB1 | 2 | |
| NFKB2 | 2 | Reddy et al. 2017; Mottok et al. 2019 |
| NLRC5 | 2 | |
| NLRP5 | 2 | Morin et al. 2013 |
| NLRP8 | 2 | Chapuy et al. 2018 |
| ODZ3 | 2 | Morin et al. 2013 |
| P2RX5 | 2, aSHM | Morin et al. 2013 |
| PAPOLG | 2 | Schmitz et al. 2018 |
| PASK | 2 | Morin et al. 2013 |
| PAX5 | 2, aSHM | L. Pasqualucci et al. 2001 |
| PCBP1 | 2 | Schmitz et al. 2012 |
| PCDHB11 | 2 | Morin et al. 2013 |
| PCLO | 2 | Lohr et al. 2012 |
| PDE4DIP | 2 | Chapuy et al. 2018 |
| PDS5B | 2 | Hübschmann et al. 2021; Morin et al. 2013 |
| PHF6 | 2 | Reddy et al. 2017; Thomas et al. 2023 |
| PIK3CD | 2 | Reddy et al. 2017 |
| PIK3R1 | 2 | Zhang et al. 2013; Panea et al. 2019 |
| PKD1 | 2 | Morin et al. 2013 |
| PNPO | 2 | Hübschmann et al. 2021 |
| POGZ | 2 | Morin et al. 2013 |
| PPP1R9B | 2 | |
| PRKCB | 2 | Morin et al. 2013 |
| PRKDC | 2 | Hübschmann et al. 2021; Schmitz et al. 2018 |
| PRPS1 | 2 | Chapuy et al. 2018 |
| PTMA | 2, aSHM | |
| PTPN1 | 2, aSHM | Gunawardana et al. 2014 |
| PTPN23 | 2 | Morin et al. 2013 |
| PTPN6 | 2 | Reddy et al. 2017 |
| PTPRK | 2 | Reddy et al. 2017 |
| RAC2 | 2 | Hübschmann et al. 2021; Panea et al. 2019 |
| RAD9A | 2 | Chapuy et al. 2018 |
| RARA | 2 | Reddy et al. 2017 |
| RCC | 2, aSHM | |
| RFTN1 | 2, aSHM | Duns et al. 2021; Arthur et al. 2018 |
| RFXAP | 2 | |
| RHEX | 2, aSHM | |
| RHOH | 2, aSHM | L. Pasqualucci et al. 2001 |
| RUBCNL | 2, aSHM | |
| RUNX1 | 2 | Reddy et al. 2017 |
| SAMD9L | 2 | Morin et al. 2013 |
| SARM1 | 2 | Morin et al. 2013 |
| SEL1L3 | 2, aSHM | |
| SEPTIN9 | 2, aSHM | |
| SERPINA9 | 2, aSHM | Arthur et al. 2018 |
| SETD2 | 2 | Zhang et al. 2013 |
| SETD5 | 2 | Reddy et al. 2017; Tiacci et al. 2018 |
| SIAH2 | 2 | Reichel et al. 2015; Hübschmann et al. 2021 |
| SLC34A2 | 2 | Hübschmann et al. 2021 |
| SMEK1 | 2 | Chapuy et al. 2018 |
| SRRM2 | 2 | Russler-Germain et al. 2023; Morin et al. 2013 |
| ST6GAL1 | 2, aSHM | Arthur et al. 2018 |
| STAT5B | 2 | Zhang et al. 2013; Tiacci et al. 2018 |
| SYK | 2 | Reddy et al. 2017 |
| SYPL1 | 2 | Morin et al. 2013 |
| TAP1 | 2 | Schmitz et al. 2018 |
| TBC1D4 | 2, aSHM | Arthur et al. 2018 |
| TCL1A | 2, aSHM | Grande et al. 2019 |
| TGFBR2 | 2 | Reddy et al. 2017 |
| TIPARP | 2 | Reddy et al. 2017 |
| TLR2 | 2 | Chapuy et al. 2018; Beà et al. 2013 |
| TRAF3 | 2 | Rossi et al. 2011; Otto et al. 2012; Laura Pasqualucci, Trifonov, et al. 2011 |
| TRAF6 | 2 | Hübschmann et al. 2021 |
| TRIP12 | 2 | |
| UBE2J1 | 2, aSHM | |
| UBR5 | 2 | Pararajalingam et al. 2020; Zhang et al. 2013 |
| UNC5B | 2 | Hübschmann et al. 2021 |
| UNC5D | 2 | |
| WAC | 2 | Rossi et al. 2012; Reddy et al. 2017 |
| WDFY3 | 2 | Morin et al. 2013 |
| WNK1 | 2 | Hübschmann et al. 2021; Thomas et al. 2023; Jallades et al. 2017 |
| XBP1 | 2, aSHM | |
| YY1 | 2 | Reddy et al. 2017 |
| ZBTB7A | 2 | Burkhardt et al. 2022; Reddy et al. 2017 |
| ZCCHC7 | 2, aSHM | Arthur et al. 2018 |
| ZEB2 | 2 | Zhang et al. 2013 |
| ZFAT | 2 | Reddy et al. 2017 |
| ZFX | 2 | Reddy et al. 2017 |
| ZNF217 | 2 | Hübschmann et al. 2021; Reichel et al. 2015 |
| ZNF423 | 2 | Chapuy et al. 2018 |
References
Albuquerque, Marco A., Bruno M. Grande, Elie J. Ritch, Prasath
Pararajalingam, Selin Jessa, Martin Krzywinski, Jasleen K. Grewal,
Sohrab P. Shah, Paul C. Boutros, and Ryan D. Morin. 2017. “Enhancing
Knowledge Discovery from Cancer Genomics Data with Galaxy.”
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