RIF1 promotes replication fork protection and efficient restart to maintain genome stability

Replication fork degradation can result in genome instability. Here authors reveal a role for Rif1 protein in protecting stalled replication forks from undergoing extensive, DNA2-dependent, degradation.

Bibliographic Details
Main Authors: Chirantani Mukherjee, Vivek Tripathi, Eleni Maria Manolika, Anne Margriet Heijink, Giulia Ricci, Sarra Merzouk, H. Rudolf de Boer, Jeroen Demmers, Marcel A. T. M. van Vugt, Arnab Ray Chaudhuri
Format: Article
Language:English
Published: Nature Portfolio 2019-07-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-019-11246-1
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author Chirantani Mukherjee
Vivek Tripathi
Eleni Maria Manolika
Anne Margriet Heijink
Giulia Ricci
Sarra Merzouk
H. Rudolf de Boer
Jeroen Demmers
Marcel A. T. M. van Vugt
Arnab Ray Chaudhuri
author_facet Chirantani Mukherjee
Vivek Tripathi
Eleni Maria Manolika
Anne Margriet Heijink
Giulia Ricci
Sarra Merzouk
H. Rudolf de Boer
Jeroen Demmers
Marcel A. T. M. van Vugt
Arnab Ray Chaudhuri
author_sort Chirantani Mukherjee
collection DOAJ
description Replication fork degradation can result in genome instability. Here authors reveal a role for Rif1 protein in protecting stalled replication forks from undergoing extensive, DNA2-dependent, degradation.
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last_indexed 2024-12-19T03:56:53Z
publishDate 2019-07-01
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spelling doaj.art-cb070f743a7d4af79f8d12d89e2dfee42022-12-21T20:36:48ZengNature PortfolioNature Communications2041-17232019-07-0110111610.1038/s41467-019-11246-1RIF1 promotes replication fork protection and efficient restart to maintain genome stabilityChirantani Mukherjee0Vivek Tripathi1Eleni Maria Manolika2Anne Margriet Heijink3Giulia Ricci4Sarra Merzouk5H. Rudolf de Boer6Jeroen Demmers7Marcel A. T. M. van Vugt8Arnab Ray Chaudhuri9Department of Molecular Genetics, Erasmus University Medical CenterDepartment of Molecular Genetics, Erasmus University Medical CenterDepartment of Molecular Genetics, Erasmus University Medical CenterDepartment of Medical Oncology, University Medical Center Groningen, University of GroningenDepartment of Molecular Genetics, Erasmus University Medical CenterDepartment of Developmental Biology, Erasmus University Medical CenterDepartment of Medical Oncology, University Medical Center Groningen, University of GroningenDepartment of Biochemistry, Erasmus University Medical CenterDepartment of Medical Oncology, University Medical Center Groningen, University of GroningenDepartment of Molecular Genetics, Erasmus University Medical CenterReplication fork degradation can result in genome instability. Here authors reveal a role for Rif1 protein in protecting stalled replication forks from undergoing extensive, DNA2-dependent, degradation.https://doi.org/10.1038/s41467-019-11246-1
spellingShingle Chirantani Mukherjee
Vivek Tripathi
Eleni Maria Manolika
Anne Margriet Heijink
Giulia Ricci
Sarra Merzouk
H. Rudolf de Boer
Jeroen Demmers
Marcel A. T. M. van Vugt
Arnab Ray Chaudhuri
RIF1 promotes replication fork protection and efficient restart to maintain genome stability
Nature Communications
title RIF1 promotes replication fork protection and efficient restart to maintain genome stability
title_full RIF1 promotes replication fork protection and efficient restart to maintain genome stability
title_fullStr RIF1 promotes replication fork protection and efficient restart to maintain genome stability
title_full_unstemmed RIF1 promotes replication fork protection and efficient restart to maintain genome stability
title_short RIF1 promotes replication fork protection and efficient restart to maintain genome stability
title_sort rif1 promotes replication fork protection and efficient restart to maintain genome stability
url https://doi.org/10.1038/s41467-019-11246-1
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