학술논문

Systematic Analysis of Splice-Site-Creating Mutations in Cancer
Document Type
article
Author
Jayasinghe, Reyka GCao, SongGao, QingsongWendl, Michael CVo, Nam SyReynolds, Sheila MZhao, YanyanClimente-González, HéctorChai, ShengjieWang, FangVarghese, RajeesHuang, MoLiang, Wen-WeiWyczalkowski, Matthew ASengupta, SohiniLi, ZhiPayne, Samuel HFenyö, DavidMiner, Jeffrey HWalter, Matthew JNetwork, The Cancer Genome Atlas ResearchCaesar-Johnson, Samantha JDemchok, John AFelau, InaKasapi, MelpomeniFerguson, Martin LHutter, Carolyn MSofia, Heidi JTarnuzzer, RoyWang, ZhiningYang, LimingZenklusen, Jean CZhang, JiashanChudamani, SudhaLiu, JiaLolla, LaxmiNaresh, RashiPihl, ToddSun, QiangWan, YunhuWu, YeCho, JuokDeFreitas, TimothyFrazer, ScottGehlenborg, NilsGetz, GadHeiman, David IKim, JaegilLawrence, Michael SLin, PeiMeier, SamNoble, Michael SSaksena, GordonVoet, DougZhang, HaileiBernard, BradyChambwe, NyashaDhankani, VarshaKnijnenburg, TheoKramer, RogerLeinonen, KalleLiu, YuexinMiller, MichaelReynolds, SheilaShmulevich, IlyaThorsson, VesteinnZhang, WeiAkbani, RehanBroom, Bradley MHegde, Apurva MJu, ZhenlinKanchi, Rupa SKorkut, AnilLi, JunLiang, HanLing, ShiyunLiu, WenbinLu, YilingMills, Gordon BNg, Kwok-ShingRao, ArvindRyan, MichaelWang, JingWeinstein, John NZhang, JiexinAbeshouse, AdamArmenia, JoshuaChakravarty, DebyaniChatila, Walid Kde Bruijn, InoGao, JianjiongGross, Benjamin EHeins, Zachary JKundra, RitikaLa, KonnorLadanyi, MarcLuna, AugustinNissan, Moriah GOchoa, AngelicaPhillips, Sarah M
Source
Cell Reports. 23(1)
Subject
Biological Sciences
Bioinformatics and Computational Biology
Human Genome
Cancer
Immunotherapy
Rare Diseases
Genetics
Cancer Genomics
5.1 Pharmaceuticals
2.1 Biological and endogenous factors
BRCA1 Protein
GATA3 Transcription Factor
HEK293 Cells
Humans
Mutation
Neoplasms
Poly (ADP-Ribose) Polymerase-1
Programmed Cell Death 1 Receptor
RNA Splice Sites
Tumor Suppressor Protein p53
X-linked Nuclear Protein
Cancer Genome Atlas Research Network
RNA
mutations of clinical relevance
splicing
Biochemistry and Cell Biology
Medical Physiology
Biological sciences
Language
Abstract
For the past decade, cancer genomic studies have focused on mutations leading to splice-site disruption, overlooking those having splice-creating potential. Here, we applied a bioinformatic tool, MiSplice, for the large-scale discovery of splice-site-creating mutations (SCMs) across 8,656 TCGA tumors. We report 1,964 originally mis-annotated mutations having clear evidence of creating alternative splice junctions. TP53 and GATA3 have 26 and 18 SCMs, respectively, and ATRX has 5 from lower-grade gliomas. Mutations in 11 genes, including PARP1, BRCA1, and BAP1, were experimentally validated for splice-site-creating function. Notably, we found that neoantigens induced by SCMs are likely several folds more immunogenic compared to missense mutations, exemplified by the recurrent GATA3 SCM. Further, high expression of PD-1 and PD-L1 was observed in tumors with SCMs, suggesting candidates for immune blockade therapy. Our work highlights the importance of integrating DNA and RNA data for understanding the functional and the clinical implications of mutations in human diseases.