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Mutational signatures of redox stress in yeast single-strand DNA and of aging in human mitochondrial DNA share a common feature

Redox stress is a major hallmark of cancer. Analysis of thousands of sequenced cancer exomes and whole genomes revealed distinct mutational signatures that can be attributed to specific sources of DNA lesions. Clustered mutations discovered in several cancer genomes were linked to single-strand DNA...

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Autores principales: Degtyareva, Natalya P., Saini, Natalie, Sterling, Joan F., Placentra, Victoria C., Klimczak, Leszek J., Gordenin, Dmitry A., Doetsch, Paul W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6527239/
https://www.ncbi.nlm.nih.gov/pubmed/31067233
http://dx.doi.org/10.1371/journal.pbio.3000263
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author Degtyareva, Natalya P.
Saini, Natalie
Sterling, Joan F.
Placentra, Victoria C.
Klimczak, Leszek J.
Gordenin, Dmitry A.
Doetsch, Paul W.
author_facet Degtyareva, Natalya P.
Saini, Natalie
Sterling, Joan F.
Placentra, Victoria C.
Klimczak, Leszek J.
Gordenin, Dmitry A.
Doetsch, Paul W.
author_sort Degtyareva, Natalya P.
collection PubMed
description Redox stress is a major hallmark of cancer. Analysis of thousands of sequenced cancer exomes and whole genomes revealed distinct mutational signatures that can be attributed to specific sources of DNA lesions. Clustered mutations discovered in several cancer genomes were linked to single-strand DNA (ssDNA) intermediates in various processes of DNA metabolism. Previously, only one clustered mutational signature had been clearly associated with a subclass of ssDNA-specific apolipoprotein B mRNA editing enzyme, catalytic polypeptide-like (APOBEC) cytidine deaminases. Others remain to be elucidated. We report here deciphering of the mutational spectra and mutational signature of redox stress in ssDNA of budding yeast and the signature of aging in human mitochondrial DNA. We found that the predominance of C to T substitutions is a common feature of both signatures. Measurements of the frequencies of hydrogen peroxide–induced mutations in proofreading-defective yeast mutants supported the conclusion that hydrogen peroxide–induced mutagenesis is not the result of increased DNA polymerase misincorporation errors but rather is caused by direct damage to DNA. Proteins involved in modulation of chromatin status play a significant role in prevention of redox stress–induced mutagenesis, possibly by facilitating protection through modification of chromatin structure. These findings provide an opportunity for the search and identification of the mutational signature of redox stress in cancers and in other pathological conditions and could potentially be used for informing therapeutic decisions. In addition, the discovery of such signatures that may be present in related organisms should also advance our understanding of evolution.
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spelling pubmed-65272392019-05-31 Mutational signatures of redox stress in yeast single-strand DNA and of aging in human mitochondrial DNA share a common feature Degtyareva, Natalya P. Saini, Natalie Sterling, Joan F. Placentra, Victoria C. Klimczak, Leszek J. Gordenin, Dmitry A. Doetsch, Paul W. PLoS Biol Research Article Redox stress is a major hallmark of cancer. Analysis of thousands of sequenced cancer exomes and whole genomes revealed distinct mutational signatures that can be attributed to specific sources of DNA lesions. Clustered mutations discovered in several cancer genomes were linked to single-strand DNA (ssDNA) intermediates in various processes of DNA metabolism. Previously, only one clustered mutational signature had been clearly associated with a subclass of ssDNA-specific apolipoprotein B mRNA editing enzyme, catalytic polypeptide-like (APOBEC) cytidine deaminases. Others remain to be elucidated. We report here deciphering of the mutational spectra and mutational signature of redox stress in ssDNA of budding yeast and the signature of aging in human mitochondrial DNA. We found that the predominance of C to T substitutions is a common feature of both signatures. Measurements of the frequencies of hydrogen peroxide–induced mutations in proofreading-defective yeast mutants supported the conclusion that hydrogen peroxide–induced mutagenesis is not the result of increased DNA polymerase misincorporation errors but rather is caused by direct damage to DNA. Proteins involved in modulation of chromatin status play a significant role in prevention of redox stress–induced mutagenesis, possibly by facilitating protection through modification of chromatin structure. These findings provide an opportunity for the search and identification of the mutational signature of redox stress in cancers and in other pathological conditions and could potentially be used for informing therapeutic decisions. In addition, the discovery of such signatures that may be present in related organisms should also advance our understanding of evolution. Public Library of Science 2019-05-08 /pmc/articles/PMC6527239/ /pubmed/31067233 http://dx.doi.org/10.1371/journal.pbio.3000263 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Degtyareva, Natalya P.
Saini, Natalie
Sterling, Joan F.
Placentra, Victoria C.
Klimczak, Leszek J.
Gordenin, Dmitry A.
Doetsch, Paul W.
Mutational signatures of redox stress in yeast single-strand DNA and of aging in human mitochondrial DNA share a common feature
title Mutational signatures of redox stress in yeast single-strand DNA and of aging in human mitochondrial DNA share a common feature
title_full Mutational signatures of redox stress in yeast single-strand DNA and of aging in human mitochondrial DNA share a common feature
title_fullStr Mutational signatures of redox stress in yeast single-strand DNA and of aging in human mitochondrial DNA share a common feature
title_full_unstemmed Mutational signatures of redox stress in yeast single-strand DNA and of aging in human mitochondrial DNA share a common feature
title_short Mutational signatures of redox stress in yeast single-strand DNA and of aging in human mitochondrial DNA share a common feature
title_sort mutational signatures of redox stress in yeast single-strand dna and of aging in human mitochondrial dna share a common feature
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6527239/
https://www.ncbi.nlm.nih.gov/pubmed/31067233
http://dx.doi.org/10.1371/journal.pbio.3000263
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