Literature DB >> 28498882

Mutational signatures and mutable motifs in cancer genomes.

Igor B Rogozin1, Youri I Pavlov2, Alexander Goncearenco3, Subhajyoti De4, Artem G Lada5, Eugenia Poliakov6, Anna R Panchenko3, David N Cooper7.   

Abstract

Cancer is a genetic disorder, meaning that a plethora of different mutations, whether somatic or germ line, underlie the etiology of the 'Emperor of Maladies'. Point mutations, chromosomal rearrangements and copy number changes, whether they have occurred spontaneously in predisposed individuals or have been induced by intrinsic or extrinsic (environmental) mutagens, lead to the activation of oncogenes and inactivation of tumor suppressor genes, thereby promoting malignancy. This scenario has now been recognized and experimentally confirmed in a wide range of different contexts. Over the past decade, a surge in available sequencing technologies has allowed the sequencing of whole genomes from liquid malignancies and solid tumors belonging to different types and stages of cancer, giving birth to the new field of cancer genomics. One of the most striking discoveries has been that cancer genomes are highly enriched with mutations of specific kinds. It has been suggested that these mutations can be classified into 'families' based on their mutational signatures. A mutational signature may be regarded as a type of base substitution (e.g. C:G to T:A) within a particular context of neighboring nucleotide sequence (the bases upstream and/or downstream of the mutation). These mutational signatures, supplemented by mutable motifs (a wider mutational context), promise to help us to understand the nature of the mutational processes that operate during tumor evolution because they represent the footprints of interactions between DNA, mutagens and the enzymes of the repair/replication/modification pathways.

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Year:  2018        PMID: 28498882      PMCID: PMC6454500          DOI: 10.1093/bib/bbx049

Source DB:  PubMed          Journal:  Brief Bioinform        ISSN: 1467-5463            Impact factor:   11.622


  18 in total

Review 1.  Guidelines for DNA recombination and repair studies: Cellular assays of DNA repair pathways.

Authors:  Hannah L Klein; Giedrė Bačinskaja; Jun Che; Anais Cheblal; Rajula Elango; Anastasiya Epshtein; Devon M Fitzgerald; Belén Gómez-González; Sharik R Khan; Sandeep Kumar; Bryan A Leland; Léa Marie; Qian Mei; Judith Miné-Hattab; Alicja Piotrowska; Erica J Polleys; Christopher D Putnam; Elina A Radchenko; Anissia Ait Saada; Cynthia J Sakofsky; Eun Yong Shim; Mathew Stracy; Jun Xia; Zhenxin Yan; Yi Yin; Andrés Aguilera; Juan Lucas Argueso; Catherine H Freudenreich; Susan M Gasser; Dmitry A Gordenin; James E Haber; Grzegorz Ira; Sue Jinks-Robertson; Megan C King; Richard D Kolodner; Andrei Kuzminov; Sarah Ae Lambert; Sang Eun Lee; Kyle M Miller; Sergei M Mirkin; Thomas D Petes; Susan M Rosenberg; Rodney Rothstein; Lorraine S Symington; Pawel Zawadzki; Nayun Kim; Michael Lisby; Anna Malkova
Journal:  Microb Cell       Date:  2019-01-07

2.  DNA polymerase η mutational signatures are found in a variety of different types of cancer.

Authors:  Igor B Rogozin; Alexander Goncearenco; Artem G Lada; Subhajyoti De; Vyacheslav Yurchenko; German Nudelman; Anna R Panchenko; David N Cooper; Youri I Pavlov
Journal:  Cell Cycle       Date:  2018-02-15       Impact factor: 4.534

Review 3.  DNA Damage and Associated DNA Repair Defects in Disease and Premature Aging.

Authors:  Vinod Tiwari; David M Wilson
Journal:  Am J Hum Genet       Date:  2019-08-01       Impact factor: 11.025

4.  Rad18 mediates specific mutational signatures and shapes the genomic landscape of carcinogen-induced tumors in vivo.

Authors:  Jitong Lou; Yang Yang; Qisheng Gu; Brandon A Price; Yuheng Qiu; Yuri Fedoriw; Siddhi Desai; Lisle E Mose; Brian Chen; Satoshi Tateishi; Joel S Parker; Cyrus Vaziri; Di Wu
Journal:  NAR Cancer       Date:  2021-01-06

5.  Inference of mutability landscapes of tumors from single cell sequencing data.

Authors:  Viachaslau Tsyvina; Alex Zelikovsky; Sagi Snir; Pavel Skums
Journal:  PLoS Comput Biol       Date:  2020-11-30       Impact factor: 4.475

6.  DNA Methylation, Deamination, and Translesion Synthesis Combine to Generate Footprint Mutations in Cancer Driver Genes in B-Cell Derived Lymphomas and Other Cancers.

Authors:  Igor B Rogozin; Abiel Roche-Lima; Kathrin Tyryshkin; Kelvin Carrasquillo-Carrión; Artem G Lada; Lennard Y Poliakov; Elena Schwartz; Andreu Saura; Vyacheslav Yurchenko; David N Cooper; Anna R Panchenko; Youri I Pavlov
Journal:  Front Genet       Date:  2021-05-19       Impact factor: 4.599

Review 7.  Diverse roles of RAD18 and Y-family DNA polymerases in tumorigenesis.

Authors:  Yang Yang; Yanzhe Gao; Anastasia Zlatanou; Satoshi Tateishi; Vyacheslav Yurchenko; Igor B Rogozin; Cyrus Vaziri
Journal:  Cell Cycle       Date:  2018-05-08       Impact factor: 4.534

8.  Finding driver mutations in cancer: Elucidating the role of background mutational processes.

Authors:  Anna-Leigh Brown; Minghui Li; Alexander Goncearenco; Anna R Panchenko
Journal:  PLoS Comput Biol       Date:  2019-04-29       Impact factor: 4.475

9.  AID and APOBECs as Multifaceted Intrinsic Virus-Restricting Factors: Emerging Concepts in the Light of COVID-19.

Authors:  Anastasia Meshcheryakova; Peter Pietschmann; Philip Zimmermann; Igor B Rogozin; Diana Mechtcheriakova
Journal:  Front Immunol       Date:  2021-07-01       Impact factor: 7.561

10.  Physicochemical Foundations of Life that Direct Evolution: Chance and Natural Selection are not Evolutionary Driving Forces.

Authors:  Didier Auboeuf
Journal:  Life (Basel)       Date:  2020-01-21
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