The Rad51 paralogs facilitate a novel DNA strand specific damage tolerance pathway

The homologous recombination machinery needs to be recruited at replication intermediates for accurate functioning. Here, the authors reveal that a Rad51 paralog-containing complex, called the Shu complex, recognizes and enables tolerance of predominantly lagging strand abasic sites.

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Autores principales: Joel C. Rosenbaum, Braulio Bonilla, Sarah R. Hengel, Tony M. Mertz, Benjamin W. Herken, Hinke G. Kazemier, Catherine A. Pressimone, Timothy C. Ratterman, Ellen MacNary, Alessio De Magis, Youngho Kwon, Stephen K. Godin, Bennett Van Houten, Daniel P. Normolle, Patrick Sung, Subha R. Das, Katrin Paeschke, Steven A. Roberts, Andrew P. VanDemark, Kara A. Bernstein
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/c959b07076c14325a2928af04c0eea82
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spelling oai:doaj.org-article:c959b07076c14325a2928af04c0eea822021-12-02T16:57:53ZThe Rad51 paralogs facilitate a novel DNA strand specific damage tolerance pathway10.1038/s41467-019-11374-82041-1723https://doaj.org/article/c959b07076c14325a2928af04c0eea822019-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-11374-8https://doaj.org/toc/2041-1723The homologous recombination machinery needs to be recruited at replication intermediates for accurate functioning. Here, the authors reveal that a Rad51 paralog-containing complex, called the Shu complex, recognizes and enables tolerance of predominantly lagging strand abasic sites.Joel C. RosenbaumBraulio BonillaSarah R. HengelTony M. MertzBenjamin W. HerkenHinke G. KazemierCatherine A. PressimoneTimothy C. RattermanEllen MacNaryAlessio De MagisYoungho KwonStephen K. GodinBennett Van HoutenDaniel P. NormollePatrick SungSubha R. DasKatrin PaeschkeSteven A. RobertsAndrew P. VanDemarkKara A. BernsteinNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Joel C. Rosenbaum
Braulio Bonilla
Sarah R. Hengel
Tony M. Mertz
Benjamin W. Herken
Hinke G. Kazemier
Catherine A. Pressimone
Timothy C. Ratterman
Ellen MacNary
Alessio De Magis
Youngho Kwon
Stephen K. Godin
Bennett Van Houten
Daniel P. Normolle
Patrick Sung
Subha R. Das
Katrin Paeschke
Steven A. Roberts
Andrew P. VanDemark
Kara A. Bernstein
The Rad51 paralogs facilitate a novel DNA strand specific damage tolerance pathway
description The homologous recombination machinery needs to be recruited at replication intermediates for accurate functioning. Here, the authors reveal that a Rad51 paralog-containing complex, called the Shu complex, recognizes and enables tolerance of predominantly lagging strand abasic sites.
format article
author Joel C. Rosenbaum
Braulio Bonilla
Sarah R. Hengel
Tony M. Mertz
Benjamin W. Herken
Hinke G. Kazemier
Catherine A. Pressimone
Timothy C. Ratterman
Ellen MacNary
Alessio De Magis
Youngho Kwon
Stephen K. Godin
Bennett Van Houten
Daniel P. Normolle
Patrick Sung
Subha R. Das
Katrin Paeschke
Steven A. Roberts
Andrew P. VanDemark
Kara A. Bernstein
author_facet Joel C. Rosenbaum
Braulio Bonilla
Sarah R. Hengel
Tony M. Mertz
Benjamin W. Herken
Hinke G. Kazemier
Catherine A. Pressimone
Timothy C. Ratterman
Ellen MacNary
Alessio De Magis
Youngho Kwon
Stephen K. Godin
Bennett Van Houten
Daniel P. Normolle
Patrick Sung
Subha R. Das
Katrin Paeschke
Steven A. Roberts
Andrew P. VanDemark
Kara A. Bernstein
author_sort Joel C. Rosenbaum
title The Rad51 paralogs facilitate a novel DNA strand specific damage tolerance pathway
title_short The Rad51 paralogs facilitate a novel DNA strand specific damage tolerance pathway
title_full The Rad51 paralogs facilitate a novel DNA strand specific damage tolerance pathway
title_fullStr The Rad51 paralogs facilitate a novel DNA strand specific damage tolerance pathway
title_full_unstemmed The Rad51 paralogs facilitate a novel DNA strand specific damage tolerance pathway
title_sort rad51 paralogs facilitate a novel dna strand specific damage tolerance pathway
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/c959b07076c14325a2928af04c0eea82
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