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Warsaw breakage syndrome DDX11 helicase acts jointly with RAD17 in the repair of bulky lesions and replication through abasic sites

Warsaw breakage syndrome, a developmental disorder caused by mutations in the DDX11/ChlR1 helicase, shows cellular features of genome instability similar to Fanconi anemia (FA). Here we report that DDX11-deficient avian DT40 cells exhibit interstrand crosslink (ICL)-induced chromatid breakage, with...

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Autores principales: Abe, Takuya, Ooka, Masato, Kawasumi, Ryotaro, Miyata, Keiji, Takata, Minoru, Hirota, Kouji, Branzei, Dana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6099846/
https://www.ncbi.nlm.nih.gov/pubmed/30061412
http://dx.doi.org/10.1073/pnas.1803110115
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author Abe, Takuya
Ooka, Masato
Kawasumi, Ryotaro
Miyata, Keiji
Takata, Minoru
Hirota, Kouji
Branzei, Dana
author_facet Abe, Takuya
Ooka, Masato
Kawasumi, Ryotaro
Miyata, Keiji
Takata, Minoru
Hirota, Kouji
Branzei, Dana
author_sort Abe, Takuya
collection PubMed
description Warsaw breakage syndrome, a developmental disorder caused by mutations in the DDX11/ChlR1 helicase, shows cellular features of genome instability similar to Fanconi anemia (FA). Here we report that DDX11-deficient avian DT40 cells exhibit interstrand crosslink (ICL)-induced chromatid breakage, with DDX11 functioning as backup for the FA pathway in regard to ICL repair. Importantly, we establish that DDX11 acts jointly with the 9-1-1 checkpoint clamp and its loader, RAD17, primarily in a postreplicative fashion, to promote homologous recombination repair of bulky lesions, but is not required for intra-S checkpoint activation or efficient fork progression. Notably, we find that DDX11 also promotes diversification of the chicken Ig-variable gene, a process triggered by programmed abasic sites, by facilitating both hypermutation and homeologous recombination-mediated gene conversion. Altogether, our results uncover that DDX11 orchestrates jointly with 9-1-1 and its loader, RAD17, DNA damage tolerance at sites of bulky lesions, and endogenous abasic sites. These functions may explain the essential roles of DDX11 and its similarity with 9-1-1 during development.
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spelling pubmed-60998462018-08-21 Warsaw breakage syndrome DDX11 helicase acts jointly with RAD17 in the repair of bulky lesions and replication through abasic sites Abe, Takuya Ooka, Masato Kawasumi, Ryotaro Miyata, Keiji Takata, Minoru Hirota, Kouji Branzei, Dana Proc Natl Acad Sci U S A Biological Sciences Warsaw breakage syndrome, a developmental disorder caused by mutations in the DDX11/ChlR1 helicase, shows cellular features of genome instability similar to Fanconi anemia (FA). Here we report that DDX11-deficient avian DT40 cells exhibit interstrand crosslink (ICL)-induced chromatid breakage, with DDX11 functioning as backup for the FA pathway in regard to ICL repair. Importantly, we establish that DDX11 acts jointly with the 9-1-1 checkpoint clamp and its loader, RAD17, primarily in a postreplicative fashion, to promote homologous recombination repair of bulky lesions, but is not required for intra-S checkpoint activation or efficient fork progression. Notably, we find that DDX11 also promotes diversification of the chicken Ig-variable gene, a process triggered by programmed abasic sites, by facilitating both hypermutation and homeologous recombination-mediated gene conversion. Altogether, our results uncover that DDX11 orchestrates jointly with 9-1-1 and its loader, RAD17, DNA damage tolerance at sites of bulky lesions, and endogenous abasic sites. These functions may explain the essential roles of DDX11 and its similarity with 9-1-1 during development. National Academy of Sciences 2018-08-14 2018-07-30 /pmc/articles/PMC6099846/ /pubmed/30061412 http://dx.doi.org/10.1073/pnas.1803110115 Text en Copyright © 2018 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Abe, Takuya
Ooka, Masato
Kawasumi, Ryotaro
Miyata, Keiji
Takata, Minoru
Hirota, Kouji
Branzei, Dana
Warsaw breakage syndrome DDX11 helicase acts jointly with RAD17 in the repair of bulky lesions and replication through abasic sites
title Warsaw breakage syndrome DDX11 helicase acts jointly with RAD17 in the repair of bulky lesions and replication through abasic sites
title_full Warsaw breakage syndrome DDX11 helicase acts jointly with RAD17 in the repair of bulky lesions and replication through abasic sites
title_fullStr Warsaw breakage syndrome DDX11 helicase acts jointly with RAD17 in the repair of bulky lesions and replication through abasic sites
title_full_unstemmed Warsaw breakage syndrome DDX11 helicase acts jointly with RAD17 in the repair of bulky lesions and replication through abasic sites
title_short Warsaw breakage syndrome DDX11 helicase acts jointly with RAD17 in the repair of bulky lesions and replication through abasic sites
title_sort warsaw breakage syndrome ddx11 helicase acts jointly with rad17 in the repair of bulky lesions and replication through abasic sites
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6099846/
https://www.ncbi.nlm.nih.gov/pubmed/30061412
http://dx.doi.org/10.1073/pnas.1803110115
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