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Mechanisms of global and region-specific control of mutagenesis. / Pavlov, Youri I.; Lada, Artem G.; Grabow, Corinn; Stepchenkova, Elena I.

Genetics, Evolution and Radiation: Crossing Borders, The Interdisciplinary Legacy of Nikolay W. Timofeeff-Ressovsky. Springer Nature, 2017. p. 55-76.

Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

Harvard

Pavlov, YI, Lada, AG, Grabow, C & Stepchenkova, EI 2017, Mechanisms of global and region-specific control of mutagenesis. in Genetics, Evolution and Radiation: Crossing Borders, The Interdisciplinary Legacy of Nikolay W. Timofeeff-Ressovsky. Springer Nature, pp. 55-76. https://doi.org/10.1007/978-3-319-48838-7_6

APA

Pavlov, Y. I., Lada, A. G., Grabow, C., & Stepchenkova, E. I. (2017). Mechanisms of global and region-specific control of mutagenesis. In Genetics, Evolution and Radiation: Crossing Borders, The Interdisciplinary Legacy of Nikolay W. Timofeeff-Ressovsky (pp. 55-76). Springer Nature. https://doi.org/10.1007/978-3-319-48838-7_6

Vancouver

Pavlov YI, Lada AG, Grabow C, Stepchenkova EI. Mechanisms of global and region-specific control of mutagenesis. In Genetics, Evolution and Radiation: Crossing Borders, The Interdisciplinary Legacy of Nikolay W. Timofeeff-Ressovsky. Springer Nature. 2017. p. 55-76 https://doi.org/10.1007/978-3-319-48838-7_6

Author

Pavlov, Youri I. ; Lada, Artem G. ; Grabow, Corinn ; Stepchenkova, Elena I. / Mechanisms of global and region-specific control of mutagenesis. Genetics, Evolution and Radiation: Crossing Borders, The Interdisciplinary Legacy of Nikolay W. Timofeeff-Ressovsky. Springer Nature, 2017. pp. 55-76

BibTeX

@inbook{4fc7266808d245b8bcfdfdbb01465798,
title = "Mechanisms of global and region-specific control of mutagenesis",
abstract = "The rate of mutations in each site of a eukaryotic genome depends on a plethora of factors: nucleotides pools, asymmetry and timing of replication, types of DNA damage and parameters of its repair, translesion DNA synthesis and structure of chromatin. Studies of mutation mechanisms, traditionally performed with model systems, are currently boosted by revolutionary analysis of mutation landscapes of cancer genomes. Etiology of familial and sporadic cancers is connected to mutations in DNA and mismatch genes that unevenly lower the accuracy of replication in different chromosomal regions. Transient appearance of single-stranded DNA makes some genomic sites vulnerable to spontaneous or enzymatic deamination by AID/APOBECs that lead to clustered mutations called kataegis. Of special significance is an impact of cell ploidy on mutagenesis outcomes. Haploid cells with the highest levels of mutagenesis die due to lethal mutations. Descendants of hypermutable cells in diploids, where lethal recessive mutations load is tolerated, could be recovered and analyzed, permitting a glimpse into hitherto hidden mechanisms of mutagenesis.",
keywords = "Cancer, DNA polymerases, Editing AID/APOBEC deaminases, Evolution, Kataegis, Mutagens, Mutation hot spots, Nucleotide pools, Recombination, Repair, Replication, Transcription",
author = "Pavlov, {Youri I.} and Lada, {Artem G.} and Corinn Grabow and Stepchenkova, {Elena I.}",
year = "2017",
month = jan,
day = "1",
doi = "10.1007/978-3-319-48838-7_6",
language = "English",
isbn = "9783319488370",
pages = "55--76",
booktitle = "Genetics, Evolution and Radiation",
publisher = "Springer Nature",
address = "Germany",

}

RIS

TY - CHAP

T1 - Mechanisms of global and region-specific control of mutagenesis

AU - Pavlov, Youri I.

AU - Lada, Artem G.

AU - Grabow, Corinn

AU - Stepchenkova, Elena I.

PY - 2017/1/1

Y1 - 2017/1/1

N2 - The rate of mutations in each site of a eukaryotic genome depends on a plethora of factors: nucleotides pools, asymmetry and timing of replication, types of DNA damage and parameters of its repair, translesion DNA synthesis and structure of chromatin. Studies of mutation mechanisms, traditionally performed with model systems, are currently boosted by revolutionary analysis of mutation landscapes of cancer genomes. Etiology of familial and sporadic cancers is connected to mutations in DNA and mismatch genes that unevenly lower the accuracy of replication in different chromosomal regions. Transient appearance of single-stranded DNA makes some genomic sites vulnerable to spontaneous or enzymatic deamination by AID/APOBECs that lead to clustered mutations called kataegis. Of special significance is an impact of cell ploidy on mutagenesis outcomes. Haploid cells with the highest levels of mutagenesis die due to lethal mutations. Descendants of hypermutable cells in diploids, where lethal recessive mutations load is tolerated, could be recovered and analyzed, permitting a glimpse into hitherto hidden mechanisms of mutagenesis.

AB - The rate of mutations in each site of a eukaryotic genome depends on a plethora of factors: nucleotides pools, asymmetry and timing of replication, types of DNA damage and parameters of its repair, translesion DNA synthesis and structure of chromatin. Studies of mutation mechanisms, traditionally performed with model systems, are currently boosted by revolutionary analysis of mutation landscapes of cancer genomes. Etiology of familial and sporadic cancers is connected to mutations in DNA and mismatch genes that unevenly lower the accuracy of replication in different chromosomal regions. Transient appearance of single-stranded DNA makes some genomic sites vulnerable to spontaneous or enzymatic deamination by AID/APOBECs that lead to clustered mutations called kataegis. Of special significance is an impact of cell ploidy on mutagenesis outcomes. Haploid cells with the highest levels of mutagenesis die due to lethal mutations. Descendants of hypermutable cells in diploids, where lethal recessive mutations load is tolerated, could be recovered and analyzed, permitting a glimpse into hitherto hidden mechanisms of mutagenesis.

KW - Cancer

KW - DNA polymerases

KW - Editing AID/APOBEC deaminases

KW - Evolution

KW - Kataegis

KW - Mutagens

KW - Mutation hot spots

KW - Nucleotide pools

KW - Recombination

KW - Repair

KW - Replication

KW - Transcription

UR - http://www.scopus.com/inward/record.url?scp=85007561763&partnerID=8YFLogxK

U2 - 10.1007/978-3-319-48838-7_6

DO - 10.1007/978-3-319-48838-7_6

M3 - Chapter

SN - 9783319488370

SP - 55

EP - 76

BT - Genetics, Evolution and Radiation

PB - Springer Nature

ER -

ID: 7599630