Sequential role of RAD51 paralog complexes in replication fork remodeling and restart

Replication stress has been associated with transient remodelling of replication intermediates into reversed forks, followed by efficient fork restart. Here the authors systematically analyse the role of RAD51 paralogs in these transactions, providing insights on the mechanistic role of different co...

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Autores principales: Matteo Berti, Federico Teloni, Sofija Mijic, Sebastian Ursich, Jevgenij Fuchs, Maria Dilia Palumbieri, Jana Krietsch, Jonas A. Schmid, Edwige B. Garcin, Stéphanie Gon, Mauro Modesti, Matthias Altmeyer, Massimo Lopes
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/46eeddebb333460895c7cc3055c262ef
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spelling oai:doaj.org-article:46eeddebb333460895c7cc3055c262ef2021-12-02T15:33:06ZSequential role of RAD51 paralog complexes in replication fork remodeling and restart10.1038/s41467-020-17324-z2041-1723https://doaj.org/article/46eeddebb333460895c7cc3055c262ef2020-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17324-zhttps://doaj.org/toc/2041-1723Replication stress has been associated with transient remodelling of replication intermediates into reversed forks, followed by efficient fork restart. Here the authors systematically analyse the role of RAD51 paralogs in these transactions, providing insights on the mechanistic role of different complexes of these proteins.Matteo BertiFederico TeloniSofija MijicSebastian UrsichJevgenij FuchsMaria Dilia PalumbieriJana KrietschJonas A. SchmidEdwige B. GarcinStéphanie GonMauro ModestiMatthias AltmeyerMassimo LopesNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Matteo Berti
Federico Teloni
Sofija Mijic
Sebastian Ursich
Jevgenij Fuchs
Maria Dilia Palumbieri
Jana Krietsch
Jonas A. Schmid
Edwige B. Garcin
Stéphanie Gon
Mauro Modesti
Matthias Altmeyer
Massimo Lopes
Sequential role of RAD51 paralog complexes in replication fork remodeling and restart
description Replication stress has been associated with transient remodelling of replication intermediates into reversed forks, followed by efficient fork restart. Here the authors systematically analyse the role of RAD51 paralogs in these transactions, providing insights on the mechanistic role of different complexes of these proteins.
format article
author Matteo Berti
Federico Teloni
Sofija Mijic
Sebastian Ursich
Jevgenij Fuchs
Maria Dilia Palumbieri
Jana Krietsch
Jonas A. Schmid
Edwige B. Garcin
Stéphanie Gon
Mauro Modesti
Matthias Altmeyer
Massimo Lopes
author_facet Matteo Berti
Federico Teloni
Sofija Mijic
Sebastian Ursich
Jevgenij Fuchs
Maria Dilia Palumbieri
Jana Krietsch
Jonas A. Schmid
Edwige B. Garcin
Stéphanie Gon
Mauro Modesti
Matthias Altmeyer
Massimo Lopes
author_sort Matteo Berti
title Sequential role of RAD51 paralog complexes in replication fork remodeling and restart
title_short Sequential role of RAD51 paralog complexes in replication fork remodeling and restart
title_full Sequential role of RAD51 paralog complexes in replication fork remodeling and restart
title_fullStr Sequential role of RAD51 paralog complexes in replication fork remodeling and restart
title_full_unstemmed Sequential role of RAD51 paralog complexes in replication fork remodeling and restart
title_sort sequential role of rad51 paralog complexes in replication fork remodeling and restart
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/46eeddebb333460895c7cc3055c262ef
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