C. elegans whole-genome sequencing reveals mutational signatures related to carcinogens and DNA repair deficiency

被引:126
|
作者
Meier, Bettina [1 ]
Cooke, Susanna L. [2 ]
Weiss, Joerg [1 ]
Bailly, Aymeric P. [1 ,3 ]
Alexandrov, Ludmil B. [2 ]
Marshall, John [2 ]
Raine, Keiran [2 ]
Maddison, Mark [2 ]
Anderson, Elizabeth [2 ]
Stratton, Michael R. [2 ]
Gartner, Anton [1 ]
Campbell, Peter J. [2 ,4 ,5 ]
机构
[1] Univ Dundee, Ctr Gene Regulat & Express, Dundee DD1 5EH, Scotland
[2] Wellcome Trust Sanger Inst, Canc Genome Project, Hinxton C810 1SA, Cambs, England
[3] Univ Montpellier, CRBM, CNRS, UMR5237, F-34293 Montpellier, France
[4] Univ Cambridge, Dept Haematol, Cambridge CB2 0XY, England
[5] Addenbrookes Hosp, Dept Haematol, Cambridge CB2 0QQ, England
基金
英国惠康基金;
关键词
FANCONI-ANEMIA PATHWAY; BREAST-CANCER GENOMES; MESSENGER-RNA LEVELS; CROSS-LINK REPAIR; CELL LUNG-CANCER; CAENORHABDITIS-ELEGANS; AFLATOXIN B-1; COLORECTAL-CANCER; SOMATIC MUTATIONS; DHFR GENE;
D O I
10.1101/gr.175547.114
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mutation is associated with developmental and hereditary disorders, aging, and cancer. While we understand some mutational processes operative in human disease, most remain mysterious. We used Caenorhabditis elegans whole-genome sequencing to model mutational signatures, analyzing 183 worm populations across 17 DNA repair-deficient backgrounds propagated for 20 generations or exposed to carcinogens. The baseline mutation rate in C. elegans was approximately one per genome per generation, not overtly altered across several DNA repair deficiencies over 20 generations. Telomere erosion led to complex chromosomal rearrangements initiated by breakage fusion bridge cycles and completed by simultaneously acquired, localized clusters of breakpoints. Aflatoxin B-1 induced substitutions of guanines in a GpC context, as observed in aflatoxin-induced liver cancers. Mutational burden increased with impaired nucleotide excision repair. Cisplatin and mechlorethamine, DNA crosslinking agents, caused dose- and genotype-dependent signatures among indels, substitutions, and rearrangements. Strikingly, both agents induced clustered rearrangements resembling "chromoanasynthesis," a replication. based mutational signature seen in constitutional genomic disorders, suggesting that interstrand crosslinks may play a pathogenic role in such events. Cisplatin mutagenicity was most pronounced in xpf-1 mutants, suggesting that this gene critically protects cells against platinum chemotherapy. Thus, experimental model systems combined with genome sequencing can recapture and mechanistically explain mutational signatures associated with human disease.
引用
收藏
页码:1624 / 1636
页数:13
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