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Error-prone bypass of DNA lesions during lagging strand replication is a common source of germline and cancer mutations

Studies in experimental systems have identified a multitude of mutational mechanisms including DNA replication infidelity and DNA damage followed by inefficient repair or replicative bypass. However, the relative contributions of these mechanisms to human germline mutation remain unknown. Here, we s...

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Autores principales: Seplyarskiy, Vladimir B., Akkuratov, Evgeny E., Akkuratova, Natalia, Andrianova, Maria A., Nikolaev, Sergey I., Bazykin, Georgii A., Adameyko, Igor, Sunyaev, Shamil R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6317876/
https://www.ncbi.nlm.nih.gov/pubmed/30510240
http://dx.doi.org/10.1038/s41588-018-0285-7
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author Seplyarskiy, Vladimir B.
Akkuratov, Evgeny E.
Akkuratova, Natalia
Andrianova, Maria A.
Nikolaev, Sergey I.
Bazykin, Georgii A.
Adameyko, Igor
Sunyaev, Shamil R.
author_facet Seplyarskiy, Vladimir B.
Akkuratov, Evgeny E.
Akkuratova, Natalia
Andrianova, Maria A.
Nikolaev, Sergey I.
Bazykin, Georgii A.
Adameyko, Igor
Sunyaev, Shamil R.
author_sort Seplyarskiy, Vladimir B.
collection PubMed
description Studies in experimental systems have identified a multitude of mutational mechanisms including DNA replication infidelity and DNA damage followed by inefficient repair or replicative bypass. However, the relative contributions of these mechanisms to human germline mutation remain unknown. Here, we show that error-prone damage bypass on the lagging strand plays a major role in human mutagenesis. Transcription-coupled DNA repair removes lesions on the transcribed strand; lesions on the non-transcribed strand are preferentially converted into mutations. In human polymorphism we detect a striking similarity between mutation types predominant on non-transcribed strand and on the strand lagging during replication. Moreover, damage-induced mutations in cancers accumulate asymmetrically with respect to the direction of replication, suggesting that DNA lesions are resolved asymmetrically. We experimentally demonstrate that replication delay greatly attenuates the mutagenic effect of UV-irradiation confirming that replication converts DNA damage into mutations. We estimate that at least 10% of human mutations arise due to DNA damage.
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spelling pubmed-63178762019-06-03 Error-prone bypass of DNA lesions during lagging strand replication is a common source of germline and cancer mutations Seplyarskiy, Vladimir B. Akkuratov, Evgeny E. Akkuratova, Natalia Andrianova, Maria A. Nikolaev, Sergey I. Bazykin, Georgii A. Adameyko, Igor Sunyaev, Shamil R. Nat Genet Article Studies in experimental systems have identified a multitude of mutational mechanisms including DNA replication infidelity and DNA damage followed by inefficient repair or replicative bypass. However, the relative contributions of these mechanisms to human germline mutation remain unknown. Here, we show that error-prone damage bypass on the lagging strand plays a major role in human mutagenesis. Transcription-coupled DNA repair removes lesions on the transcribed strand; lesions on the non-transcribed strand are preferentially converted into mutations. In human polymorphism we detect a striking similarity between mutation types predominant on non-transcribed strand and on the strand lagging during replication. Moreover, damage-induced mutations in cancers accumulate asymmetrically with respect to the direction of replication, suggesting that DNA lesions are resolved asymmetrically. We experimentally demonstrate that replication delay greatly attenuates the mutagenic effect of UV-irradiation confirming that replication converts DNA damage into mutations. We estimate that at least 10% of human mutations arise due to DNA damage. 2018-12-03 2019-01 /pmc/articles/PMC6317876/ /pubmed/30510240 http://dx.doi.org/10.1038/s41588-018-0285-7 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Seplyarskiy, Vladimir B.
Akkuratov, Evgeny E.
Akkuratova, Natalia
Andrianova, Maria A.
Nikolaev, Sergey I.
Bazykin, Georgii A.
Adameyko, Igor
Sunyaev, Shamil R.
Error-prone bypass of DNA lesions during lagging strand replication is a common source of germline and cancer mutations
title Error-prone bypass of DNA lesions during lagging strand replication is a common source of germline and cancer mutations
title_full Error-prone bypass of DNA lesions during lagging strand replication is a common source of germline and cancer mutations
title_fullStr Error-prone bypass of DNA lesions during lagging strand replication is a common source of germline and cancer mutations
title_full_unstemmed Error-prone bypass of DNA lesions during lagging strand replication is a common source of germline and cancer mutations
title_short Error-prone bypass of DNA lesions during lagging strand replication is a common source of germline and cancer mutations
title_sort error-prone bypass of dna lesions during lagging strand replication is a common source of germline and cancer mutations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6317876/
https://www.ncbi.nlm.nih.gov/pubmed/30510240
http://dx.doi.org/10.1038/s41588-018-0285-7
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