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DDX5 resolves R-loops at DNA double-strand breaks to promote DNA repair and avoid chromosomal deletions

R-loops are three-stranded structures consisting of a DNA/RNA hybrid and a displaced DNA strand. The regulatory factors required to process this fundamental genetic structure near double-strand DNA breaks (DSBs) are not well understood. We previously reported that cellular depletion of the ATP-depen...

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Autores principales: Yu, Zhenbao, Mersaoui, Sofiane Y, Guitton-Sert, Laure, Coulombe, Yan, Song, Jingwen, Masson, Jean-Yves, Richard, Stéphane
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7520851/
https://www.ncbi.nlm.nih.gov/pubmed/33015627
http://dx.doi.org/10.1093/narcan/zcaa028
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author Yu, Zhenbao
Mersaoui, Sofiane Y
Guitton-Sert, Laure
Coulombe, Yan
Song, Jingwen
Masson, Jean-Yves
Richard, Stéphane
author_facet Yu, Zhenbao
Mersaoui, Sofiane Y
Guitton-Sert, Laure
Coulombe, Yan
Song, Jingwen
Masson, Jean-Yves
Richard, Stéphane
author_sort Yu, Zhenbao
collection PubMed
description R-loops are three-stranded structures consisting of a DNA/RNA hybrid and a displaced DNA strand. The regulatory factors required to process this fundamental genetic structure near double-strand DNA breaks (DSBs) are not well understood. We previously reported that cellular depletion of the ATP-dependent DEAD box RNA helicase DDX5 increases R-loops genome-wide causing genomic instability. In this study, we define a pivotal role for DDX5 in clearing R-loops at or near DSBs enabling proper DNA repair to avoid aberrations such as chromosomal deletions. Remarkably, using the non-homologous end joining reporter gene (EJ5-GFP), we show that DDX5-deficient U2OS cells exhibited asymmetric end deletions on the side of the DSBs where there is overlap with a transcribed gene. Cross-linking and immunoprecipitation showed that DDX5 bound RNA transcripts near DSBs and required its helicase domain and the presence of DDX5 near DSBs was also shown by chromatin immunoprecipitation. DDX5 was excluded from DSBs in a transcription- and ATM activation-dependent manner. Using DNA/RNA immunoprecipitation, we show DDX5-deficient cells had increased R-loops near DSBs. Finally, DDX5 deficiency led to delayed exonuclease 1 and replication protein A recruitment to laser irradiation-induced DNA damage sites, resulting in homologous recombination repair defects. Our findings define a role for DDX5 in facilitating the clearance of RNA transcripts overlapping DSBs to ensure proper DNA repair.
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spelling pubmed-75208512020-10-01 DDX5 resolves R-loops at DNA double-strand breaks to promote DNA repair and avoid chromosomal deletions Yu, Zhenbao Mersaoui, Sofiane Y Guitton-Sert, Laure Coulombe, Yan Song, Jingwen Masson, Jean-Yves Richard, Stéphane NAR Cancer DNA Damage Sensing and Repair R-loops are three-stranded structures consisting of a DNA/RNA hybrid and a displaced DNA strand. The regulatory factors required to process this fundamental genetic structure near double-strand DNA breaks (DSBs) are not well understood. We previously reported that cellular depletion of the ATP-dependent DEAD box RNA helicase DDX5 increases R-loops genome-wide causing genomic instability. In this study, we define a pivotal role for DDX5 in clearing R-loops at or near DSBs enabling proper DNA repair to avoid aberrations such as chromosomal deletions. Remarkably, using the non-homologous end joining reporter gene (EJ5-GFP), we show that DDX5-deficient U2OS cells exhibited asymmetric end deletions on the side of the DSBs where there is overlap with a transcribed gene. Cross-linking and immunoprecipitation showed that DDX5 bound RNA transcripts near DSBs and required its helicase domain and the presence of DDX5 near DSBs was also shown by chromatin immunoprecipitation. DDX5 was excluded from DSBs in a transcription- and ATM activation-dependent manner. Using DNA/RNA immunoprecipitation, we show DDX5-deficient cells had increased R-loops near DSBs. Finally, DDX5 deficiency led to delayed exonuclease 1 and replication protein A recruitment to laser irradiation-induced DNA damage sites, resulting in homologous recombination repair defects. Our findings define a role for DDX5 in facilitating the clearance of RNA transcripts overlapping DSBs to ensure proper DNA repair. Oxford University Press 2020-09-25 /pmc/articles/PMC7520851/ /pubmed/33015627 http://dx.doi.org/10.1093/narcan/zcaa028 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of NAR Cancer. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle DNA Damage Sensing and Repair
Yu, Zhenbao
Mersaoui, Sofiane Y
Guitton-Sert, Laure
Coulombe, Yan
Song, Jingwen
Masson, Jean-Yves
Richard, Stéphane
DDX5 resolves R-loops at DNA double-strand breaks to promote DNA repair and avoid chromosomal deletions
title DDX5 resolves R-loops at DNA double-strand breaks to promote DNA repair and avoid chromosomal deletions
title_full DDX5 resolves R-loops at DNA double-strand breaks to promote DNA repair and avoid chromosomal deletions
title_fullStr DDX5 resolves R-loops at DNA double-strand breaks to promote DNA repair and avoid chromosomal deletions
title_full_unstemmed DDX5 resolves R-loops at DNA double-strand breaks to promote DNA repair and avoid chromosomal deletions
title_short DDX5 resolves R-loops at DNA double-strand breaks to promote DNA repair and avoid chromosomal deletions
title_sort ddx5 resolves r-loops at dna double-strand breaks to promote dna repair and avoid chromosomal deletions
topic DNA Damage Sensing and Repair
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7520851/
https://www.ncbi.nlm.nih.gov/pubmed/33015627
http://dx.doi.org/10.1093/narcan/zcaa028
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