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Expression of the cancer-associated DNA polymerase ε P286R in fission yeast leads to translesion synthesis polymerase dependent hypermutation and defective DNA replication

Somatic and germline mutations in the proofreading domain of the replicative DNA polymerase ε (POLE-exonuclease domain mutations, POLE-EDMs) are frequently found in colorectal and endometrial cancers and, occasionally, in other tumours. POLE-associated cancers typically display hypermutation, and a...

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Autores principales: Soriano, Ignacio, Vazquez, Enrique, De Leon, Nagore, Bertrand, Sibyl, Heitzer, Ellen, Toumazou, Sophia, Bo, Zhihan, Palles, Claire, Pai, Chen-Chun, Humphrey, Timothy C., Tomlinson, Ian, Cotterill, Sue, Kearsey, Stephen E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8284607/
https://www.ncbi.nlm.nih.gov/pubmed/34228709
http://dx.doi.org/10.1371/journal.pgen.1009526
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author Soriano, Ignacio
Vazquez, Enrique
De Leon, Nagore
Bertrand, Sibyl
Heitzer, Ellen
Toumazou, Sophia
Bo, Zhihan
Palles, Claire
Pai, Chen-Chun
Humphrey, Timothy C.
Tomlinson, Ian
Cotterill, Sue
Kearsey, Stephen E.
author_facet Soriano, Ignacio
Vazquez, Enrique
De Leon, Nagore
Bertrand, Sibyl
Heitzer, Ellen
Toumazou, Sophia
Bo, Zhihan
Palles, Claire
Pai, Chen-Chun
Humphrey, Timothy C.
Tomlinson, Ian
Cotterill, Sue
Kearsey, Stephen E.
author_sort Soriano, Ignacio
collection PubMed
description Somatic and germline mutations in the proofreading domain of the replicative DNA polymerase ε (POLE-exonuclease domain mutations, POLE-EDMs) are frequently found in colorectal and endometrial cancers and, occasionally, in other tumours. POLE-associated cancers typically display hypermutation, and a unique mutational signature, with a predominance of C > A transversions in the context TCT and C > T transitions in the context TCG. To understand better the contribution of hypermutagenesis to tumour development, we have modelled the most recurrent POLE-EDM (POLE-P286R) in Schizosaccharomyces pombe. Whole-genome sequencing analysis revealed that the corresponding pol2-P287R allele also has a strong mutator effect in vivo, with a high frequency of base substitutions and relatively few indel mutations. The mutations are equally distributed across different genomic regions, but in the immediate vicinity there is an asymmetry in AT frequency. The most abundant base-pair changes are TCT > TAT transversions and, in contrast to human mutations, TCG > TTG transitions are not elevated, likely due to the absence of cytosine methylation in fission yeast. The pol2-P287R variant has an increased sensitivity to elevated dNTP levels and DNA damaging agents, and shows reduced viability on depletion of the Pfh1 helicase. In addition, S phase is aberrant and RPA foci are elevated, suggestive of ssDNA or DNA damage, and the pol2-P287R mutation is synthetically lethal with rad3 inactivation, indicative of checkpoint activation. Significantly, deletion of genes encoding some translesion synthesis polymerases, most notably Pol κ, partially suppresses pol2-P287R hypermutation, indicating that polymerase switching contributes to this phenotype.
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spelling pubmed-82846072021-07-28 Expression of the cancer-associated DNA polymerase ε P286R in fission yeast leads to translesion synthesis polymerase dependent hypermutation and defective DNA replication Soriano, Ignacio Vazquez, Enrique De Leon, Nagore Bertrand, Sibyl Heitzer, Ellen Toumazou, Sophia Bo, Zhihan Palles, Claire Pai, Chen-Chun Humphrey, Timothy C. Tomlinson, Ian Cotterill, Sue Kearsey, Stephen E. PLoS Genet Research Article Somatic and germline mutations in the proofreading domain of the replicative DNA polymerase ε (POLE-exonuclease domain mutations, POLE-EDMs) are frequently found in colorectal and endometrial cancers and, occasionally, in other tumours. POLE-associated cancers typically display hypermutation, and a unique mutational signature, with a predominance of C > A transversions in the context TCT and C > T transitions in the context TCG. To understand better the contribution of hypermutagenesis to tumour development, we have modelled the most recurrent POLE-EDM (POLE-P286R) in Schizosaccharomyces pombe. Whole-genome sequencing analysis revealed that the corresponding pol2-P287R allele also has a strong mutator effect in vivo, with a high frequency of base substitutions and relatively few indel mutations. The mutations are equally distributed across different genomic regions, but in the immediate vicinity there is an asymmetry in AT frequency. The most abundant base-pair changes are TCT > TAT transversions and, in contrast to human mutations, TCG > TTG transitions are not elevated, likely due to the absence of cytosine methylation in fission yeast. The pol2-P287R variant has an increased sensitivity to elevated dNTP levels and DNA damaging agents, and shows reduced viability on depletion of the Pfh1 helicase. In addition, S phase is aberrant and RPA foci are elevated, suggestive of ssDNA or DNA damage, and the pol2-P287R mutation is synthetically lethal with rad3 inactivation, indicative of checkpoint activation. Significantly, deletion of genes encoding some translesion synthesis polymerases, most notably Pol κ, partially suppresses pol2-P287R hypermutation, indicating that polymerase switching contributes to this phenotype. Public Library of Science 2021-07-06 /pmc/articles/PMC8284607/ /pubmed/34228709 http://dx.doi.org/10.1371/journal.pgen.1009526 Text en © 2021 Soriano et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Soriano, Ignacio
Vazquez, Enrique
De Leon, Nagore
Bertrand, Sibyl
Heitzer, Ellen
Toumazou, Sophia
Bo, Zhihan
Palles, Claire
Pai, Chen-Chun
Humphrey, Timothy C.
Tomlinson, Ian
Cotterill, Sue
Kearsey, Stephen E.
Expression of the cancer-associated DNA polymerase ε P286R in fission yeast leads to translesion synthesis polymerase dependent hypermutation and defective DNA replication
title Expression of the cancer-associated DNA polymerase ε P286R in fission yeast leads to translesion synthesis polymerase dependent hypermutation and defective DNA replication
title_full Expression of the cancer-associated DNA polymerase ε P286R in fission yeast leads to translesion synthesis polymerase dependent hypermutation and defective DNA replication
title_fullStr Expression of the cancer-associated DNA polymerase ε P286R in fission yeast leads to translesion synthesis polymerase dependent hypermutation and defective DNA replication
title_full_unstemmed Expression of the cancer-associated DNA polymerase ε P286R in fission yeast leads to translesion synthesis polymerase dependent hypermutation and defective DNA replication
title_short Expression of the cancer-associated DNA polymerase ε P286R in fission yeast leads to translesion synthesis polymerase dependent hypermutation and defective DNA replication
title_sort expression of the cancer-associated dna polymerase ε p286r in fission yeast leads to translesion synthesis polymerase dependent hypermutation and defective dna replication
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8284607/
https://www.ncbi.nlm.nih.gov/pubmed/34228709
http://dx.doi.org/10.1371/journal.pgen.1009526
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