Germline determinants of the somatic mutation landscape in 2,642 cancer genomes

Author:

Waszak Sebastian MORCID,Tiao Grace,Zhu Bin,Rausch Tobias,Muyas Francesc,Rodríguez-Martín Bernardo,Rabionet Raquel,Yakneen Sergei,Escaramis Georgia,Li Yilong,Saini Natalie,Roberts Steven A,Demidov German M,Pitkänen Esa,Delaneau Olivier,Heredia-Genestar Jose Maria,Weischenfeldt Joachim,Shringarpure Suyash S,Chen Jieming,Nakagawa Hidewaki,Alexandrov Ludmil B,Drechsel Oliver,Dursi L Jonathan,Segre Ayellet V,Garrison Erik,Erkek Serap,Habermann Nina,Urban Lara,Khurana Ekta,Cafferkey Andy,Hayashi Shuto,Imoto Seiya,Aaltonen Lauri A,Alvarez Eva G,Baez-Ortega Adrian,Bailey Matthew,Bosio Mattia,Bruzos Alicia L,Buchhalter Ivo,Bustamante Carlos D.,Calabrese Claudia,DiBiase Anthony,Gerstein Mark,Holik Aliaksei Z,Hua Xing,Huang Kuan-lin,Letunic Ivica,Klimczak Leszek J,Koster Roelof,Kumar Sushant,McLellan Mike,Mashl Jay,Mirabello Lisa,Newhouse Steven,Prasad Aparna,Rätsch Gunnar,Schlesner Matthias,Schwarz Roland,Sharma Pramod,Shmaya Tal,Sidiropoulos Nikos,Song Lei,Susak Hana,Tanskanen Tomas,Tojo Marta,Wedge David C,Wright Mark,Wu Ying,Ye Kai,Yellapantula Venkata D,Zamora Jorge,Butte Atul J,Getz Gad,Simpson Jared,Ding Li,Marques-Bonet Tomas,Navarro Arcadi,Brazma Alvis,Campbell Peter,Chanock Stephen J,Chatterjee Nilanjan,Stegle Oliver,Siebert Reiner,Ossowski Stephan,Harismendy Olivier,Gordenin Dmitry A,Tubio Jose MC,Vega Francisco M De La,Easton Douglas F,Estivill Xavier,Korbel Jan O, ,

Abstract

AbstractCancers develop through somatic mutagenesis, however germline genetic variation can markedly contribute to tumorigenesis via diverse mechanisms. We discovered and phased 88 million germline single nucleotide variants, short insertions/deletions, and large structural variants in whole genomes from 2,642 cancer patients, and employed this genomic resource to study genetic determinants of somatic mutagenesis across 39 cancer types. Our analyses implicate damaging germline variants in a variety of cancer predisposition and DNA damage response genes with specific somatic mutation patterns. Mutations in the MBD4 DNA glycosylase gene showed association with elevated C>T mutagenesis at CpG dinucleotides, a ubiquitous mutational process acting across tissues. Analysis of somatic structural variation exposed complex rearrangement patterns, involving cycles of templated insertions and tandem duplications, in BRCA1-deficient tumours. Genome-wide association analysis implicated common genetic variation at the APOBEC3 gene cluster with reduced basal levels of somatic mutagenesis attributable to APOBEC cytidine deaminases across cancer types. We further inferred over a hundred polymorphic L1/LINE elements with somatic retrotransposition activity in cancer. Our study highlights the major impact of rare and common germline variants on mutational landscapes in cancer.

Publisher

Cold Spring Harbor Laboratory

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