Interaction of the Warsaw breakage syndrome DNA helicase DDX11 with the replication fork-protection factor Timeless promotes sister chromatid cohesion.

Establishment of sister chromatid cohesion is coupled to DNA replication, but the underlying molecular mechanisms are incompletely understood. DDX11 (also named ChlR1) is a super-family 2 Fe-S cluster-containing DNA helicase implicated in Warsaw breakage syndrome (WABS). Herein, we examined the role...

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Main Authors: Giuseppe Cortone, Ge Zheng, Pasquale Pensieri, Viviana Chiappetta, Rosarita Tatè, Eva Malacaria, Pietro Pichierri, Hongtao Yu, Francesca M Pisani
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-10-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC6179184?pdf=render
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spelling doaj-1f67aff65e4e476eaab083559b9c04bc2020-11-25T01:04:21ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042018-10-011410e100762210.1371/journal.pgen.1007622Interaction of the Warsaw breakage syndrome DNA helicase DDX11 with the replication fork-protection factor Timeless promotes sister chromatid cohesion.Giuseppe CortoneGe ZhengPasquale PensieriViviana ChiappettaRosarita TatèEva MalacariaPietro PichierriHongtao YuFrancesca M PisaniEstablishment of sister chromatid cohesion is coupled to DNA replication, but the underlying molecular mechanisms are incompletely understood. DDX11 (also named ChlR1) is a super-family 2 Fe-S cluster-containing DNA helicase implicated in Warsaw breakage syndrome (WABS). Herein, we examined the role of DDX11 in cohesion establishment in human cells. We demonstrated that DDX11 interacts with Timeless, a component of the replication fork-protection complex, through a conserved peptide motif. The DDX11-Timeless interaction is critical for sister chromatid cohesion in interphase and mitosis. Immunofluorescence studies further revealed that cohesin association with chromatin requires DDX11. Finally, we demonstrated that DDX11 localises at nascent DNA by SIRF analysis. Moreover, we found that DDX11 promotes cohesin binding to the DNA replication forks in concert with Timeless and that recombinant purified cohesin interacts with DDX11 in vitro. Collectively, our results establish a critical role for the DDX11-Timeless interaction in coordinating DNA replication with sister chromatid cohesion, and have important implications for understanding the molecular basis of WABS.http://europepmc.org/articles/PMC6179184?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Giuseppe Cortone
Ge Zheng
Pasquale Pensieri
Viviana Chiappetta
Rosarita Tatè
Eva Malacaria
Pietro Pichierri
Hongtao Yu
Francesca M Pisani
spellingShingle Giuseppe Cortone
Ge Zheng
Pasquale Pensieri
Viviana Chiappetta
Rosarita Tatè
Eva Malacaria
Pietro Pichierri
Hongtao Yu
Francesca M Pisani
Interaction of the Warsaw breakage syndrome DNA helicase DDX11 with the replication fork-protection factor Timeless promotes sister chromatid cohesion.
PLoS Genetics
author_facet Giuseppe Cortone
Ge Zheng
Pasquale Pensieri
Viviana Chiappetta
Rosarita Tatè
Eva Malacaria
Pietro Pichierri
Hongtao Yu
Francesca M Pisani
author_sort Giuseppe Cortone
title Interaction of the Warsaw breakage syndrome DNA helicase DDX11 with the replication fork-protection factor Timeless promotes sister chromatid cohesion.
title_short Interaction of the Warsaw breakage syndrome DNA helicase DDX11 with the replication fork-protection factor Timeless promotes sister chromatid cohesion.
title_full Interaction of the Warsaw breakage syndrome DNA helicase DDX11 with the replication fork-protection factor Timeless promotes sister chromatid cohesion.
title_fullStr Interaction of the Warsaw breakage syndrome DNA helicase DDX11 with the replication fork-protection factor Timeless promotes sister chromatid cohesion.
title_full_unstemmed Interaction of the Warsaw breakage syndrome DNA helicase DDX11 with the replication fork-protection factor Timeless promotes sister chromatid cohesion.
title_sort interaction of the warsaw breakage syndrome dna helicase ddx11 with the replication fork-protection factor timeless promotes sister chromatid cohesion.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2018-10-01
description Establishment of sister chromatid cohesion is coupled to DNA replication, but the underlying molecular mechanisms are incompletely understood. DDX11 (also named ChlR1) is a super-family 2 Fe-S cluster-containing DNA helicase implicated in Warsaw breakage syndrome (WABS). Herein, we examined the role of DDX11 in cohesion establishment in human cells. We demonstrated that DDX11 interacts with Timeless, a component of the replication fork-protection complex, through a conserved peptide motif. The DDX11-Timeless interaction is critical for sister chromatid cohesion in interphase and mitosis. Immunofluorescence studies further revealed that cohesin association with chromatin requires DDX11. Finally, we demonstrated that DDX11 localises at nascent DNA by SIRF analysis. Moreover, we found that DDX11 promotes cohesin binding to the DNA replication forks in concert with Timeless and that recombinant purified cohesin interacts with DDX11 in vitro. Collectively, our results establish a critical role for the DDX11-Timeless interaction in coordinating DNA replication with sister chromatid cohesion, and have important implications for understanding the molecular basis of WABS.
url http://europepmc.org/articles/PMC6179184?pdf=render
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