학술논문

Analyses of non-coding somatic drivers in 2,658 cancer whole genomes.
Document Type
article
Author
Rheinbay, EstherNielsen, Morten MuhligAbascal, FedericoWala, Jeremiah AShapira, OferTiao, GraceHornshøj, HenrikHess, Julian MJuul, Randi IstrupLin, ZiaoFeuerbach, LarsSabarinathan, RadhakrishnanMadsen, TobiasKim, JaegilMularoni, LorisShuai, ShiminLanzós, AndrésHerrmann, CarlMaruvka, Yosef EShen, CiyueAmin, Samirkumar BBandopadhayay, PratitiBertl, JohannaBoroevich, Keith ABusanovich, JohnCarlevaro-Fita, JoanaChakravarty, DimpleChan, Calvin Wing YiuCraft, DavidDhingra, PriyankaDiamanti, KlevFonseca, Nuno AGonzalez-Perez, AbelGuo, QianyunHamilton, Mark PHaradhvala, Nicholas JHong, ChenIsaev, KerenJohnson, Todd AJuul, MaleneKahles, AndreKahraman, AbdullahKim, YoungwookKomorowski, JanKumar, KiranKumar, SushantLee, DonghoonLehmann, Kjong-VanLi, YilongLiu, Eric MinweiLochovsky, LucasPark, KeunchilPich, OriolRoberts, Nicola DSaksena, GordonSchumacher, Steven ESidiropoulos, NikosSieverling, LinaSinnott-Armstrong, NasaStewart, ChipTamborero, DavidTubio, Jose MCUmer, Husen MUusküla-Reimand, LiisWadelius, ClaesWadi, LinaYao, XiaotongZhang, Cheng-ZhongZhang, JingHaber, James EHobolth, AsgerImielinski, MarcinKellis, ManolisLawrence, Michael Svon Mering, ChristianNakagawa, HidewakiRaphael, Benjamin JRubin, Mark ASander, ChrisStein, Lincoln DStuart, Joshua MTsunoda, TatsuhikoWheeler, David AJohnson, RoryReimand, JüriGerstein, MarkKhurana, EktaCampbell, Peter JLópez-Bigas, NúriaPCAWG Drivers and Functional Interpretation Working GroupPCAWG Structural Variation Working GroupWeischenfeldt, JoachimBeroukhim, RameenMartincorena, IñigoPedersen, Jakob SkouGetz, GadPCAWG Consortium
Source
Nature. 578(7793)
Subject
PCAWG Drivers and Functional Interpretation Working Group
PCAWG Structural Variation Working Group
PCAWG Consortium
Humans
Neoplasms
Gene Expression Regulation
Neoplastic
Mutation
Genome
Human
Databases
Genetic
DNA Breaks
INDEL Mutation
Genome-Wide Association Study
Gene Expression Regulation
Neoplastic
Genome
Human
Databases
Genetic
General Science & Technology
Language
Abstract
The discovery of drivers of cancer has traditionally focused on protein-coding genes1-4. Here we present analyses of driver point mutations and structural variants in non-coding regions across 2,658 genomes from the Pan-Cancer Analysis of Whole Genomes (PCAWG) Consortium5 of the International Cancer Genome Consortium (ICGC) and The Cancer Genome Atlas (TCGA). For point mutations, we developed a statistically rigorous strategy for combining significance levels from multiple methods of driver discovery that overcomes the limitations of individual methods. For structural variants, we present two methods of driver discovery, and identify regions that are significantly affected by recurrent breakpoints and recurrent somatic juxtapositions. Our analyses confirm previously reported drivers6,7, raise doubts about others and identify novel candidates, including point mutations in the 5' region of TP53, in the 3' untranslated regions of NFKBIZ and TOB1, focal deletions in BRD4 and rearrangements in the loci of AKR1C genes. We show that although point mutations and structural variants that drive cancer are less frequent in non-coding genes and regulatory sequences than in protein-coding genes, additional examples of these drivers will be found as more cancer genomes become available.