SNPMiner Trials by Shray Alag

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SNPMiner SNPMiner Trials (Home Page)


Report for Mutation R172M

Developed by Shray Alag, 2020.
SNP Clinical Trial Gene

There are 2 clinical trials

Clinical Trials


1 A Phase 2 Study of the PARP Inhibitor Olaparib (AZD2281) in IDH1 and IDH2 Mutant Advanced Solid Tumors

This phase II trial studies how well olaparib works in treating patients with glioma, cholangiocarcinoma, or solid tumors with IDH1 or IDH2 mutations that have spread to other places in the body (metastatic) and usually cannot be cured or controlled with treatment (refractory). Olaparib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth.

NCT03212274
Conditions
  1. Advanced Malignant Solid Neoplasm
  2. Glioblastoma
  3. Recurrent Cholangiocarcinoma
  4. Recurrent Glioma
  5. Recurrent Malignant Solid Neoplasm
  6. WHO Grade II Glioma
  7. WHO Grade III Glioma
Interventions
  1. Drug: Olaparib
MeSH:Neoplasms Glioblastoma Glioma Cholangiocarcinoma
HPO:Cholangiocarcinoma Glioblastoma multiforme Glioma Neoplasm

Summary statistics will be reported (with 95% confidence intervals) to demonstrate mean differences in fold-change (or log fold-change) between responders and non-responders.. Inclusion Criteria: - Subjects must be able to understand the nature of this trial and provide written informed consent, prior to any study specific procedures; patients with Impaired Decision Making Capacity (IDMC) who have a close caregiver or legally authorized representative (LAR) may be considered eligible for this study at the treating physician's discretion, provided that the physician is reasonably sure that the possible risks and benefits of the study are clear and that the patient will take the drug as prescribed - Subjects must be diagnosed with a glioma, cholangiocarcinoma or other solid malignant tumor that has progressed despite standard therapy, or for which no effective standard therapy exists, with biopsy-confirmed evidence of an IDH1 or IDH2 mutation associated with neomorphic activity of the encoded proteins; patients must have IDH1 or IDH2 mutation which must be detected in a clinical accredited laboratory using a Food and Drug Administration (FDA)-approved molecular test or a validated deoxyribonucleic acid (DNA)-based assay conducted in a Clinical Laboratory Improvement Amendments (CLIA)-certified laboratory; only specific mutations that lead to a neomorphic phenotype will be eligible for enrollment, and include IDH1: R132V, R132G, R132S, R132L, R132C and R132H; IDH2: R140W, R140L, R140Q, R172W, R172G, R172S, R172M, R172K - Patients must have tumors determined to be easily accessible for biopsy and must be willing to have serial biopsies (with a third biopsy upon evidence of disease progression); in case of multiple lesions, tumor biopsies will be performed on the most accessible site of disease; all possible precautions to avoid complications will be taken, including discussions in multidisciplinary meetings, if needed; patients affected by glioma will not be considered for study biopsies - Patients must be willing to undergo extra blood sampling for correlative studies - Subjects with extracranial disease must have evaluable disease by Response Evaluation Criteria in Solid Tumors version 1.1 (RECIST v1.1); subjects affected by glioma must have evaluable disease by Response Assessment in Neuro-Oncology Criteria (RANO) criteria - For subjects with glioma, specific inclusion criteria are as follows: - The disease should be recurrent or transformed glioma; subjects must not have had prior surgery (biopsy allowed) or radiation therapy within 3 weeks of enrollment - There must be an enhancing component of disease, as evaluated on pre-treatment magnetic resonance imaging (MRI) - For patients with World Health Organization (WHO) grade III or IV glioma and progressive disease < 12 weeks after completion of chemoradiotherapy, progression can be defined by the following set of criteria: - New enhancement outside of the radiation field (beyond the high-dose region or 80% isodose line) - If there is unequivocal evidence of viable tumor on histopathologic sampling (e.g., solid tumor areas. --- R132V --- --- R132G --- --- R132S --- --- R132L --- --- R132C --- --- R132H --- --- R140W --- --- R140L --- --- R140Q --- --- R172W --- --- R172G --- --- R172S --- --- R172M ---

bosentan, efavirenz, modafinil); the required washout period prior to starting olaparib is 5 weeks for enzalutamide or phenobarbital and 3 weeks for other agents; because the lists of these agents are constantly changing, it is important to regularly consult a frequently updated drug information reference; medical reference texts such as the Physicians' Desk Reference may also provide this information; as part of the enrollment/informed consent procedures, the patient will be counseled on the risk of interactions with other agents, and what to do if new medications need to be prescribed or if the patient is considering a new over-the-counter medicine or herbal product - Persistent toxicities caused by previous cancer therapy; toxicities should have recovered to =< grade 1, excluding alopecia and stable chronic grade 2 toxicity that is not overlapping with presumed toxicities of olaparib - Patients with myelodysplastic syndrome/acute myeloid leukemia or with features suggestive of MDS/AML - Patients with symptomatic uncontrolled brain metastases; a scan to confirm the absence of brain metastases is not required; the patient can receive a stable dose of corticosteroids before and during the study if these were started at least 4 weeks prior to treatment; patients with spinal cord compression unless considered to have received definitive treatment for this and evidence of clinically stable disease for 28 days; patients with known uncontrolled brain metastases should be excluded from this clinical trial because of their poor prognosis and because they often develop progressive neurologic dysfunction that would confound the evaluation of neurologic and other adverse events - Major surgery within 2 weeks of starting study treatment; effects from surgeries should have recovered to =< grade 1, with the exception of stable chronic grade 2 that is not overlapping with presumed toxicities of olaparib - Patients considered a poor medical risk due to a serious, uncontrolled medical disorder, non-malignant systemic disease or active, uncontrolled infection; examples include, but are not limited to, uncontrolled ventricular arrhythmia, recent (within 3 months) myocardial infarction, uncontrolled major seizure disorder, unstable spinal cord compression, superior vena cava syndrome, extensive interstitial bilateral lung disease on high resolution computed tomography (HRCT) scan or any psychiatric disorder that prohibits obtaining informed consent and would limit compliance with study requirements - Patients unable to swallow orally administered medication and patients with gastrointestinal disorders likely to interfere with absorption of the study medication - Women who are actively breast feeding - Immunocompromised patients, e.g., patients who are known to be serologically positive for human immunodeficiency virus (HIV); HIV-positive patients on combination antiretroviral therapy are ineligible because of the potential for pharmacokinetic interactions with Olaparib; in addition, these patients are at increased risk of lethal infections when treated with marrow-suppressive therapy; appropriate studies will be undertaken in patients receiving combination antiretroviral therapy when indicated - Patients with a known hypersensitivity to olaparib or any of the excipients of the product; history of allergic reactions attributed to compounds of similar chemica Inclusion Criteria: - Subjects must be able to understand the nature of this trial and provide written informed consent, prior to any study specific procedures; patients with Impaired Decision Making Capacity (IDMC) who have a close caregiver or legally authorized representative (LAR) may be considered eligible for this study at the treating physician's discretion, provided that the physician is reasonably sure that the possible risks and benefits of the study are clear and that the patient will take the drug as prescribed - Subjects must be diagnosed with a glioma, cholangiocarcinoma or other solid malignant tumor that has progressed despite standard therapy, or for which no effective standard therapy exists, with biopsy-confirmed evidence of an IDH1 or IDH2 mutation associated with neomorphic activity of the encoded proteins; patients must have IDH1 or IDH2 mutation which must be detected in a clinical accredited laboratory using a Food and Drug Administration (FDA)-approved molecular test or a validated deoxyribonucleic acid (DNA)-based assay conducted in a Clinical Laboratory Improvement Amendments (CLIA)-certified laboratory; only specific mutations that lead to a neomorphic phenotype will be eligible for enrollment, and include IDH1: R132V, R132G, R132S, R132L, R132C and R132H; IDH2: R140W, R140L, R140Q, R172W, R172G, R172S, R172M, R172K - Patients must have tumors determined to be easily accessible for biopsy and must be willing to have serial biopsies (with a third biopsy upon evidence of disease progression); in case of multiple lesions, tumor biopsies will be performed on the most accessible site of disease; all possible precautions to avoid complications will be taken, including discussions in multidisciplinary meetings, if needed; patients affected by glioma will not be considered for study biopsies - Patients must be willing to undergo extra blood sampling for correlative studies - Subjects with extracranial disease must have evaluable disease by Response Evaluation Criteria in Solid Tumors version 1.1 (RECIST v1.1); subjects affected by glioma must have evaluable disease by Response Assessment in Neuro-Oncology Criteria (RANO) criteria - For subjects with glioma, specific inclusion criteria are as follows: - The disease should be recurrent or transformed glioma; subjects must not have had prior surgery (biopsy allowed) or radiation therapy within 3 weeks of enrollment - There must be an enhancing component of disease, as evaluated on pre-treatment magnetic resonance imaging (MRI) - For patients with World Health Organization (WHO) grade III or IV glioma and progressive disease < 12 weeks after completion of chemoradiotherapy, progression can be defined by the following set of criteria: - New enhancement outside of the radiation field (beyond the high-dose region or 80% isodose line) - If there is unequivocal evidence of viable tumor on histopathologic sampling (e.g., solid tumor areas. --- R132V --- --- R132G --- --- R132S --- --- R132L --- --- R132C --- --- R132H --- --- R140W --- --- R140L --- --- R140Q --- --- R172W --- --- R172G --- --- R172S --- --- R172M ---

Primary Outcomes

Description: Will be determined by investigator assessment using Response Evaluation Criteria in Solid Tumors version 1.1 (RECIST v1.1) for extracranial solid tumors, Response Assessment in Neuro-Oncology (RANO) criteria for intracranial glioma. Overall response rate and a 90% creditable interval in each cohort will be estimated using the approach described by Koyama. For the other solid tumors cohort, descriptive statistics and graphical displays will be used to summarize results within tumor types.

Measure: Overall response rate

Time: Up to completion of course 8

Secondary Outcomes

Description: For time to event endpoints, Kaplan-Meier curves will be used to demonstrate distributions and median estimates will be reported with 95% confidence intervals. For each cohort, graphical displays such as swimmer plots, will be used to demonstrate patterns of response, progression and death, and in the third cohort they will also indicate disease type.

Measure: Progression-free survival

Time: From start of treatment to time of progression or death, whichever occurs first, assessed up to 1 year

Description: Adverse events will be tabulated by type and grade in each cohort, and also across cohorts.

Measure: Incidence of adverse events

Time: Up to 1 year

Other Outcomes

Description: Absolute and fold changes for exploratory endpoints will be calculated between baseline and each subsequent follow-up time point. These will be displayed graphically versus (vs.) time for each cohort. Differences will be plotted vs. response status. Paired t-tests will be used to evaluate if differences between baseline and each subsequent time point are significant. Summary statistics will be reported (with 95% confidence intervals) to demonstrate mean differences in fold-change (or log fold-change) between responders and non-responders.

Measure: 2HG plasma magnetic resonance spectroscopy (MRS) levels

Time: Baseline up to post-treatment

Description: Absolute and fold changes for exploratory endpoints will be calculated between baseline and each subsequent follow-up time point. These will be displayed graphically vs. time for each cohort. Differences will be plotted vs. response status. Paired t-tests will be used to evaluate if differences between baseline and each subsequent time point are significant. Summary statistics will be reported (with 95% confidence intervals) to demonstrate mean differences in fold-change (or log fold-change) between responders and non-responders.

Measure: 2HG plasma concentration level

Time: Up to 1 year

Description: Will be associated with differential levels of 2HG production, treatment response and resistance. Absolute and fold changes for exploratory endpoints will be calculated between baseline and each subsequent follow-up time point. These will be displayed graphically vs. time for each cohort. Differences will be plotted vs. response status. Paired t-tests will be used to evaluate if differences between baseline and each subsequent time point are significant. Summary statistics will be reported (with 95% confidence intervals) to demonstrate mean differences in fold-change (or log fold-change) between responders and non-responders.

Measure: Co-occurring alterations detected via mass cytometry (cyTOF), ribonucleic acid (RNA) sequencing and/or deoxyribonucleic acid (DNA) sequencing

Time: Baseline up to 1 year

2 The PRIME Trial: PARP Inhibition in IDH Mutant Effectiveness Trial. A Phase II Study of Olaparib in Isocitrate Dehydrogenase (IDH) Mutant Relapsed/Refractory Acute Myeloid Leukemia and Myelodysplastic Syndrome

This phase II trial studies how well olaparib works in treating patients with acute myeloid leukemia that has come back (relapsed) or does not respond to treatment (refractory), or myelodysplastic syndrome. Patients must also have a change in the gene called the IDH gene (IDH mutation). Olaparib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. This study is being done to see if olaparib is better or worse in treating acute myeloid leukemia or myelodysplastic syndrome compared to the standard chemotherapy drugs.

NCT03953898
Conditions
  1. Acute Myeloid Leukemia
  2. Acute Myeloid Leukemia Arising From Previous Myelodysplastic Syndrome
  3. Recurrent Acute Myeloid Leukemia
  4. Recurrent Myelodysplastic Syndrome
  5. Refractory Acute Myeloid Leukemia
  6. Refractory Myelodysplastic Syndrome
  7. Therapy-Related Acute Myeloid Leukemia
Interventions
  1. Drug: Olaparib
MeSH:Leukemia Leukemia, Myeloid Leukemia, Myeloid, Acute Preleukemia Myelodysplastic Syndromes Syndrome
HPO:Acute megakaryocytic leukemia Acute myeloid leukemia Leukemia Myelodysplasia Myeloid leukemia

Only specific mutations that lead to a neomorphic phenotype will be eligible for enrollment, and include those listed below: - IDH1: R132V, R132G, R132S, R132L, R132C and R132H - IDH2: R140W, R140L, R140Q, R172W, R172G, R172S, R172M, R172K. --- R132V --- --- R132G --- --- R132S --- --- R132L --- --- R132C --- --- R132H --- --- R140W --- --- R140L --- --- R140Q --- --- R172W --- --- R172G --- --- R172S --- --- R172M ---

Primary Outcomes

Description: The effectiveness of the drug in patients for each cohort will be independently assessed by ORR. The exact two-sided 95% confidence intervals (CI) for the ORR will be reported. The CI based on the Greenwoods variance will be reported.

Measure: Overall response rate (ORR)

Time: Up to 12 months

Description: Will be evaluated by Myelodysplastic Syndrome International Working Group (IWG) 2006 criteria (Cheson et al., 2006) and acute myeloid leukemia (AML) IWG 2003 criteria (Cheson et al., 2003) after 6 cycles of treatment. Cumulative ORR will include complete remission (CR), complete remission with incomplete blood count recovery (CRi), partial response (PR), and bone marrow complete remission (marrow CR) achieved at least at one point during these 6 cycles.

Measure: Cumulative ORR

Time: Up to 6 cycles

Secondary Outcomes

Description: Will be estimated using the Kaplan-Meier method with the 95% CIs. The CI based on the Greenwoods variance will be reported. In addition, the possible risk factors will be compared for survival with log-rank test. For multivariate analysis, the proportional hazards Cox model will be applied to investigate potential prognostic factors, such as age and stage of disease on the survival data. The adjusted p-values of the odds ratios and the adjusted 95% confidence interval will be reported.

Measure: Progression-free survival (PFS)

Time: From first day of therapy to the time of documentation of progression, death of any cause, or last follow-up, whichever comes first, assessed up to 12 months

Description: Will be estimated using the Kaplan-Meier method with the 95% CIs. The CI based on the Greenwoods variance will be reported. In addition, the possible risk factors will be compared for survival with log-rank test. For multivariate analysis, the proportional hazards Cox model will be applied to investigate potential prognostic factors, such as age and stage of disease on the survival data. The adjusted p-values of the odds ratios and the adjusted 95% confidence interval will be reported.

Measure: Overall survival (OS)

Time: From first day of therapy to the time of death or last follow-up, whichever comes first, assessed up to 12 months

Measure: Duration of response (DOR)

Time: From first documentation of response to the time of documentation of progression, death of any cause, or last follow-up, whichever comes first, assessed up to 12 months

Description: Non-hematologic toxicity will be evaluated by Common Terminology Criteria for Adverse Events version 5 criteria.

Measure: Incidence of adverse events

Time: Up to 12 months

Other Outcomes

Description: The Mann-Whitney U test will be used to test for differences in post-treatment plasma 2HG concentrations between patients with a response to treatment and those without. Will also test for differences in Delta2HG (defined as pre-treatment minus post-treatment plasma concentration) between patients with a response to treatment and those without. Differences with p =< 0.05 will be considered significant. The area under the receiver operating characteristic curve (ROC AUC) will be calculated to determine the cutoff value of the Delta2HG difference. The optimal cutoff value will be determined at the point on the ROC curve at (sensitivity + specificity - 1) is maximized.

Measure: Change in 2-hydroxyglutarate (2HG) levels

Time: Up to 12 months

Description: Will define MRD based on the variation of the variant allele frequency of the IDH1/2 mutation in the bone marrow of the patients before and during therapy. Will evaluate two different variables: MRD negativity (defined by the absence of detection of the IDH mutant in the sample) and the molecular response (defined by the log reduction of the frequency of the mutant allele). MRD negativity is a qualitative variable and will be reported as a percentage with 95% confidence interval for each time point and mutation. Will compare the different groups using a Chi-Square test. Molecular response is a quantitative variable reported as a median, min and max for each time point and we will use a student t test for the comparison of the different groups.

Measure: Minimal residual disease (MRD) assessment

Time: Up to 12 months

Description: Will be estimated using Poisson distribution model as the fraction of positive reads divided by total reads containing a target. The limit of detection will be defined for each mutation as the mean value of IDH1/2 wild-type controls plus three standard deviations.

Measure: Mutant allele frequency

Time: Up to 12 months


HPO Nodes


HP:0002664: Neoplasm
Genes 1537
H19 RPS19 WT1 GPR101 CHEK2 MYD88 VEGFC PGM3 CTNNB1 PDGFRA IRF1 RHBDF2 PICALM FANCC GDNF RET PRKAR1A NELFA BCL10 KRT10 BLK TINF2 SMARCD2 NSD2 BRCA1 KRAS TRIP13 KCNH1 PERP CDH23 IKBKG MCC JAK2 MET GTF2E2 FOXC2 NF1 RAD51 TP53 ERCC4 WNT10A ASXL1 CTLA4 FLT4 DVL3 BRCA1 MLH3 NSD1 ERCC2 TSC2 FANCL RPS14 CDC73 TNFRSF4 STAG3 MSTO1 AIP EVC RET PLCD1 SDHB NEK1 POLH ASXL1 BRAF IL7 MAP2K1 ARSA BRAF COL4A5 CYLD KRT14 MLLT10 RASGRP1 H19 XIAP NTHL1 FGFR2 IGH DNAJC21 LETM1 MCM4 MYF6 CD70 FAM149B1 FGFR3 TERF2IP TNFRSF13C GLI3 DDX41 RPL26 PRLR SBDS LIG4 MGMT RERE KLLN FANCM WT1 PHB AXIN2 KIT PTEN TGFBR2 GJA1 PDGFRL STAT6 TYR CPLANE1 IFNG SIX6 JAG1 PALB2 SSX1 FANCG KIT MYO1H ELANE RPS19 H19-ICR KRT6B IDH2 PLCB4 FGFR1 BAP1 MINPP1 MST1 SMARCB1 PDGFRB RB1 FAT4 NF1 HFE SDHD WT1 TET2 BMPR1A RAF1 POLR1D CBFB SKIV2L IRF1 COL18A1 HMBS RET MMEL1 IGF2R JAK2 SEC23A BUB1B XPC ING1 AXIN2 KIT PALB2 MAGT1 STAC3 ALK SLC25A13 TMEM231 SHOX TDGF1 REST SMO SMARCA4 DNM2 TSR2 LIN28B GNAS WT1 CDKN1A DNAJC21 DKC1 BAP1 SRGAP1 ALX1 PTPN11 CBL APC SCN11A MAP3K1 RPL10 KLF6 PAX7 APC C1S NRTN BUB3 KRT5 LIG4 CARD14 GNAS MLH1 CDKN2A GNA11 TMEM127 ESR1 IL2RG KRT1 MET NF2 SDHAF2 SDHD WT1 MAP3K8 STAT1 PHOX2B PTPRJ PTCH2 CHD7 TERT LMNA ERCC6 EDNRB XPA PDGFRA OFD1 VHL SAMD9L SF3B1 FERMT1 BRCA1 GDF2 CASP8 TP53 LAMC2 GFI1B FANCD2 PYGL CR2 AR REST APPL1 APC CYP2A6 SEMA3C WT1 CDKN2A CTSA LRRC8A PHOX2B SMARCB1 NAGS FLI1 SOX2 RAD21 TMEM127 APC FGF3 BAP1 BUB1 RAD51 DKC1 RAD54B VHL EPCAM ASXL1 SRC HRAS BMP2 SLC25A11 PTH1R KRAS MYD88 NPM1 PTEN SH3GL1 PHOX2B TP53 SMAD4 XPA GATA4 MLH1 PMS2 STK11 FANCC DHCR7 PTCH1 CDC73 CYLD MEN1 CLCNKB CHEK2 RNF139 HABP2 POLE H19-ICR MMP1 RPL27 CC2D2A PIK3CA GPC3 ABL1 PALLD WASHC5 INTU ERCC5 DYNC2LI1 SLC22A18 TP53 CDH1 SHH MPL AKT1 NFKB2 NRAS PIGL CASP8 MYC KCNE3 DLST TAF15 TNFRSF13B GDNF EYA1 APC2 TNFRSF1B TCTN3 PPOX PNP PKHD1 BLM ODC1 IL12A TERT STK11 KRT17 IDH1 CIB1 RPL18 DVL1 ARHGAP26 PHOX2B CASP8 RPGRIP1L KRT6A SDHB FGFR2 VAMP7 JAK2 SRY DNMT3A EPAS1 KCNQ1OT1 MSH6 KRAS SDHB WNT5A DNMT3A RUNX1 TRIM28 DHCR24 USB1 VANGL2 GCM2 LIG4 KRAS SDHB ENG SEMA3D TRNS2 MINPP1 CASP10 NTHL1 LMOD1 SUFU FOXH1 CD81 ALX4 F13B BMPR1B RB1 CACNA1S CHIC2 VHL HRAS KIF11 KCNJ11 WRN SLC37A4 GNAQ LZTR1 CCND1 CPLX1 NR4A3 RYR1 NBEAL2 GATA2 TP63 APC KRAS HNF1B SUFU GNB1 MSX2 GPC3 CEL TCTN3 OCA2 MDM4 RB1 TMC6 ASCL1 AR BRIP1 CHEK2 AAGAB TSC1 TXNRD2 POLD1 CARMIL2 APC PIK3CA AKT1 POLE FAN1 RAD21 G6PC BRD4 PTCH2 MSH2 DHH EWSR1 SPRTN SDHC PTCH1 ALX3 CD79A TMEM67 INPP5E CCBE1 KRT6B BRCA2 ITK GINS1 HLA-DRB1 SNAI2 NBN PHOX2B BRAF CDH1 FANCE TYR GPC4 NF1 CD19 MVD AIP AR NBN TMEM107 BRIP1 ATRX BCHE MITF WRN BCR BCR NF2 SERPINA1 SDHB RABL3 PARN ANTXR2 TERT DPM1 IFIH1 GDF5 ZAP70 MEN1 TP53 GNAS BRCA2 TMC8 NODAL LETM1 VANGL1 TBXT BRCA1 FIBP FLT4 IL1B CCL2 FGFR3 SUFU MTAP ELANE CD19 HNF4A SAMD9 BUB1B KLHDC8B SLC26A2 FGFR3 FOXP1 PUF60 RUNX1 PTCH2 TRNK FLT4 TYROBP MPL KRAS RAD54L PIK3CA FAH CHEK2 CPLANE1 FAM20C CXCR4 DDR2 POU6F2 TMC6 SEC23B RET TRNP TFE3 TP53 NAB2 ANTXR1 MYSM1 SDHAF2 BTK TNFRSF10B DCLRE1C L2HGDH CDKN2A CYP11B2 BRCA2 SDHD TET2 TMEM216 BRAF PTCH2 TCF3 RPL11 NNT FLT3 BAX HAX1 IGF2 AKT1 FGFR3 MLH3 PLA2G2A TCF4 MLH3 NOTCH1 ERCC4 RRAS2 GPC4 DICER1 LZTS1 DOCK8 CASP10 GREM1 HPGD COL1A1 DCLRE1C IDH1 XRCC3 SUFU DNAJC21 PDGFRB TP53 NLRP1 WWOX TSC1 CTSC USP9X PDCD10 MEN1 ASCL1 RNF43 TNFRSF13C ESCO2 ZFPM2 AP2S1 PRCC HMBS ADA2 GANAB WT1 RNF43 HRAS KRAS SETD2 ATP6V1B2 FLT3 TJP2 BMPR1A PDGFB KIAA0753 PTEN STK4 NFKB1 BAP1 PMS1 MSR1 SLC26A2 RECQL4 MSH2 JAK2 ATRX FH RECQL4 FCN3 CD28 ASPSCR1 ADAR WHCR NOTCH3 GATA2 SMARCE1 CDKN2A RET ESCO2 EXT1 ERCC5 TET2 MBTPS2 NF1 OFD1 AGGF1 MVK KIT MUTYH HRAS KRIT1 FGFR1 TRIM28 CHEK2 CD79B GNAS BRCA2 KDSR BAX HACE1 MAP2K2 EDN3 ERCC2 CTNNB1 IL6 IGH PIK3CA MSH3 FZD2 SMPD1 SNAI2 PHOX2B SLC26A2 OFD1 PAX4 RB1 TRIP13 EWSR1 SCN9A PIK3R1 GBA EP300 PIK3CA HMMR KIT PDE6D ZSWIM6 SH3KBP1 SRP54 FUZ USP8 WT1 TERT MAFA FOXO1 GJB3 RAD51D POT1 SDHC PRKAR1A CREB1 SH2D1A WIPF1 WWOX PIK3CA NF2 HNF4A FAS RNASEH2A CD27 ATRX SPRED1 RPS14 FDPS RNR1 PALB2 NF1 MN1 TET2 GPC4 KDR SOX9 RAD51 MAX MYLK EP300 SHOX FOXE1 TCOF1 ESCO2 MYH11 HSPA9 MAD2L2 KRT9 CYP2D6 RFWD3 FANCE KRAS CCND1 LMO1 PTCH1 PORCN EDN3 PDGFRA DICER1 FANCA TERC CTBP1 SDHD ANTXR1 CXCR4 RAD50 BRCA2 MC1R MPL SLC22A18 MMP1 KRT16 F13A1 TSC2 ENG SETBP1 WT1 TET2 SDHC SMAD4 ZFHX3 GFI1 RNF113A STK11 KARS1 FOXE1 CDKN2B WT1 ERBB3 SMARCAD1 PDGFRL DMPK GTF2H5 NF2 CEBPA RPS28 PMS1 AKT1 PRDM16 NBN GCK SPINK1 ERBB2 JAK2 KIT DKC1 EXT1 JAK2 COL7A1 AXIN1 SLC22A18 NRAS ECM1 GNPTAB ABCA5 CDH1 NRAS ERCC6 VANGL1 RAD51C MYCN HBB TP53 SRY FANCI AKT1 MITF LEMD3 TARS1 TET2 NSD2 DAXX DYNC2LI1 OGG1 EXT1 TNFSF15 TERT ERCC6 DMRT3 SLC25A11 CTNNB1 VHL KLLN MLH3 EIF2AK4 GJB6 BARD1 OCRL GPR35 MYC DLST KRAS MSH3 RMRP PRKCD KLF6 NEUROD1 FANCG SLC17A9 BMPER FLCN SDHC SF3B1 STS GNA14 TERC MNX1 CAT TCF4 TUBB TRNQ BRCA2 IL12RB1 PDX1 CDKN2A SLC26A4 SDHC PPM1D NRAS PRKAR1A NRAS TAL1 KIF1B DNMT3A PDGFB MRAP ERCC3 CDC73 PRF1 RFWD3 PMVK RPL15 FGFR1 TP53 BICC1 HNF1A GATA1 RTEL1 RPS15A ERCC4 WRAP53 NR0B1 BCR FGFR2 SEC23A KRT17 NR5A1 VHL BLM BRAF ICOS POLD1 RPS27 FASLG CYSLTR2 PTEN PRKN THPO KIF7 NRAS TAL2 BRAF WDPCP DCC MSH6 NOP10 WNT10A PSAP ERCC2 CALR ACD SLX4 ACAN HABP2 GJB4 TET2 PHF21A ERCC3 MDH2 APC PALB2 RPL10 KRT17 PGM3 IL7R ARL6IP6 APC TCIRG1 NF1 SMAD4 PTPN3 PIK3CA ABCA5 FGFR2 TGFBR2 BRCA2 HNF1A RNASEH2C PAX6 IGH TTC37 DICER1 SRY GPC6 TOP2A KIT OFD1 PALB2 NRAS MC1R SDHD TFAP2A FGFR3 TNFRSF1B REST PTEN MST1R SCN4A BRCA2 CDKN2A FGFR2 ZIC2 EFL1 ECE1 NUP214 DDB2 GPC3 KCNQ1 PTEN HNF1B FN1 ASCC1 SPIB SRP72 PTEN FANCB KCNJ10 AKT1 KRAS KEAP1 INS DISP1 PTEN SASH1 CDKN1C ACTB TNFRSF13B MYH8 EDN1 IVNS1ABP NSUN2 TSC1 RAD51C MSH3 ATP7B RET PTPN12 STIM1 DHCR7 KRAS SFTPC BMPR1A XPC TMC8 KCNJ10 KDM6B STK11 KRAS GNAQ KRAS HFE HOXD13 B3GALT6 RPL5 KAT6B GATA2 MUC5B PIK3CA USP8 GDNF SMAD4 MVK RHBDF2 SSX2 CEP57 RAD51C NEK9 JAK2 PDGFB NRAS KRT1 PIK3CA MFN2 DOCK8 PTEN IL7 SDHC ATM AKT1 BRCA1 RELA GCDH PIK3CA IDH2 HRAS CTLA4 GPR143 ERCC2 GATA2 PTPN11 IGF2 SMAD4 NDUFAF6 CDH23 RPS7 RAD54B TP53 MUTYH GLI3 PTPN11 BRIP1 CDKN1B SF3B1 PTCH1 CIB1 ERCC3 PTPN11 TRPV3 GDNF IGLL1 PRKCD CTNNB1 PIK3CA PTPN11 SLCO2A1 FAH BRCA1 ETV6 BRCA2 EPCAM TP53 EXT1 BCL10 TRPS1 BMPR1A ATM MPL KRT17 MAX SLC12A3 ADA TERT UBE2T TSC2 TCTN3 MSH2 BDNF BTK SKI RPS20 NRAS RUNX1 DCC MSH2 RPS24 WT1 TRNF TFAP2A RPL35 RPS17 SDHA RARA CDC73 SBDS POLH BRAF LAMB3 RNF6 PIEZO2 KCNQ1OT1 CCM2 PHKA2 POU2AF1 TP53 TREM2 ABCC8 EXT2 ALK PHKG2 NUTM1 SLC26A4 PTCH1 MUTYH PALLD NBN FANCA SQSTM1 ELMO2 ACP5 TWIST1 TRIM37 RPL31 HFE RET DLC1 SDHB EP300 TREX1 HSPG2 ATP7A MSH6 C2CD3 CHRNG SRP54 TINF2 BUB1 PSENEN SMAD4 NF1 ERCC3 ARID1B RMRP WAS GATA2 MAPK1 BIN1 COL7A1 EDN3 PIK3CA IGF2 H19-ICR TUBB FH MLH1 TNFSF12 PIK3R1 RASA1 F5 SH2B3 CTNNB1 FOXI1 SUFU TLR2 SRSF2 CDKN1B GJC2 OPCML LEMD3 FIBP TRNS1 HNF1A VHL PTEN PRKAR1A MSH2 CYLD CTHRC1 COL7A1 DDB2 SDHC GJB2 LIG4 MDM2 LAMA3 CHEK2 MTOR CDON SMARCE1 TAF1 GNAQ TP53 RAD54L WWOX BMPR1A CCND1 GFI1 BCL10 PTEN CTNNB1 DHX37 SLX4 FGF8 XRCC4 TRIP13 CDC73 BIRC3 NOTCH3 DIS3L2 PKD2 KIF1B GNA11 ARMC5 CREBBP DIS3L2 HRAS LMX1B BAP1 BRCA2 POT1 ABCB11 AURKA RASA1 SMARCB1 ALX4 GPC3 MGAT2 PAX3 IGHM LMNA TCF4 GATA1 TRNK IDH1 LRP5 CALR FH RET SEC23B APC TET2 SETBP1 WT1 PMS2 POLR1C SIX3 EPHB2 RPL35A RET TINF2 CD28 CYP26C1 MNX1 ALX3 KIT CPOX GJB2 DLL1 MSTO1 RSPO1 TEK EXT2 ABCC6 COL2A1 GNAS FH FASLG BAP1 COL14A1 YY1 RAG2 RB1CC1 MAP2K1 RHOH STAR CREBBP RECQL4 EVC2 HBB ERBB2 ABL1 NDP SUFU NF2 MSH6 ATP7A TSC1 FAS SLC6A17 MS4A1 NQO2 FLCN EXTL3 SOS1 RNASEL NPM1 KIT GNAI3 TRNH RAG1 HRAS BUB1B IGF2 PLAG1 FANCD2 BCL2 NEK1 KIT ATP7A PIK3CA SMARCB1 PCGF2 LIG4 BCL6 NUP214 FLNA IRF5 ACVR1 GAS1 DYNC2H1 RSPRY1 TRAF7 RNASEH2B REST RPS29 TGIF1 TERT PIGA TP53 CDK4 GPR101 ACVRL1 SAMHD1 MSL3 MAPRE2 SLC45A2 CTNNB1 ADA KLF11 NKX2-1 GLI2 PKD1 MAP3K1 SRP54 TNFSF12 ND5 CRKL RASGRP1 BCL10 RPS26 GLI3 TRNL1 AR SDHA RB1 MLH1 MC2R TGFBR1 KIT CYP11B1 AXIN2 EGFR PIK3CA RECQL4 EXOC6B SMO SFTPA2 NRAS CDKN1B TP53 PIK3CA MSH6 ACTG2 POT1 SDHB RNF6 CALR KCNN3 C11ORF95 TSC2 CD96 SOS1 COL2A1 SMAD7 GLI1 FANCF MPL CDH1 BRCA2 BRAF ATR SDHA FLCN DICER1 IL1RN ICOS AIP RSPO1 DICER1 GCM2 XRCC2 DNASE1L3 PPP2R1B TGFBR2 MTM1 CDKN2C SIX1 MEN1 POU6F2 SRD5A3 STAT3 ERCC3 TG ASXL1 CDKN2B CYLD NHP2 CCDC22 TBC1D24 BLNK DIS3L2 SH2B3 MPLKIP AHCY PCNA EXT2 EXT2 MEN1 PARN WRAP53 TP53 HBB GABRD NUMA1 APC ZSWIM6 BRCA1 GJB2 KCNAB2 AIP USF3 RUNX1 H19 HDAC4 SDHD UROD PDGFRB CR2 HRAS CDH1 ERBB2 TNPO3 LPP SDHD IL2RG ATM BARD1 TREX1 POLE C2CD3 ERCC4 SLC25A13 PNP KRAS SRSF2 SDHB FGFR3 CASR CASP10 TET2 CTC1 ENPP1 SOX6 PIK3CA BMPR1A ERCC2 TERC CBL ADAMTS3 PIGL BCR SAMD9L NOD2 CBL TGFBR2 MALT1 SEMA4A ANTXR2 SLC37A4 TBX2 DHH STS SDHB TERT KRT16 DZIP1L RTEL1 SDHD CCND1 AKT1 FOXI1 CDK4 NSD1 MLH1 FLCN DLEC1 FGFRL1 MTMR14 GCGR TBX18 CREBBP MXI1 APC BCL10 COL11A2 TERT MC1R SCN10A RPS10 SMO BRCA2 KIT ATM PRKN MRE11 KIF1B KCNH1 VHL GPR101 GNAS PMS2 ACD WDPCP MAD1L1