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PDS5 proteins are required for proper cohesin dynamics and participate in replication fork protection

Cohesin is a chromatin-bound complex that mediates sister chromatid cohesion and facilitates long-range interactions through DNA looping. How the transcription and replication machineries deal with the presence of cohesin on chromatin remains unclear. The dynamic association of cohesin with chromati...

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Autores principales: Morales, Carmen, Ruiz-Torres, Miguel, Rodríguez-Acebes, Sara, Lafarga, Vanesa, Rodríguez-Corsino, Miriam, Megías, Diego, Cisneros, David A., Peters, Jan-Michael, Méndez, Juan, Losada, Ana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6952610/
https://www.ncbi.nlm.nih.gov/pubmed/31757807
http://dx.doi.org/10.1074/jbc.RA119.011099
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author Morales, Carmen
Ruiz-Torres, Miguel
Rodríguez-Acebes, Sara
Lafarga, Vanesa
Rodríguez-Corsino, Miriam
Megías, Diego
Cisneros, David A.
Peters, Jan-Michael
Méndez, Juan
Losada, Ana
author_facet Morales, Carmen
Ruiz-Torres, Miguel
Rodríguez-Acebes, Sara
Lafarga, Vanesa
Rodríguez-Corsino, Miriam
Megías, Diego
Cisneros, David A.
Peters, Jan-Michael
Méndez, Juan
Losada, Ana
author_sort Morales, Carmen
collection PubMed
description Cohesin is a chromatin-bound complex that mediates sister chromatid cohesion and facilitates long-range interactions through DNA looping. How the transcription and replication machineries deal with the presence of cohesin on chromatin remains unclear. The dynamic association of cohesin with chromatin depends on WAPL cohesin release factor (WAPL) and on PDS5 cohesin-associated factor (PDS5), which exists in two versions in vertebrate cells, PDS5A and PDS5B. Using genetic deletion in mouse embryo fibroblasts and a combination of CRISPR-mediated gene editing and RNAi-mediated gene silencing in human cells, here we analyzed the consequences of PDS5 depletion for DNA replication. We found that either PDS5A or PDS5B is sufficient for proper cohesin dynamics and that their simultaneous removal increases cohesin's residence time on chromatin and slows down DNA replication. A similar phenotype was observed in WAPL-depleted cells. Cohesin down-regulation restored normal replication fork rates in PDS5-deficient cells, suggesting that chromatin-bound cohesin hinders the advance of the replisome. We further show that PDS5 proteins are required to recruit WRN helicase-interacting protein 1 (WRNIP1), RAD51 recombinase (RAD51), and BRCA2 DNA repair associated (BRCA2) to stalled forks and that in their absence, nascent DNA strands at unprotected forks are degraded by MRE11 homolog double-strand break repair nuclease (MRE11). These findings indicate that PDS5 proteins participate in replication fork protection and also provide insights into how cohesin and its regulators contribute to the response to replication stress, a common feature of cancer cells.
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spelling pubmed-69526102020-01-13 PDS5 proteins are required for proper cohesin dynamics and participate in replication fork protection Morales, Carmen Ruiz-Torres, Miguel Rodríguez-Acebes, Sara Lafarga, Vanesa Rodríguez-Corsino, Miriam Megías, Diego Cisneros, David A. Peters, Jan-Michael Méndez, Juan Losada, Ana J Biol Chem DNA and Chromosomes Cohesin is a chromatin-bound complex that mediates sister chromatid cohesion and facilitates long-range interactions through DNA looping. How the transcription and replication machineries deal with the presence of cohesin on chromatin remains unclear. The dynamic association of cohesin with chromatin depends on WAPL cohesin release factor (WAPL) and on PDS5 cohesin-associated factor (PDS5), which exists in two versions in vertebrate cells, PDS5A and PDS5B. Using genetic deletion in mouse embryo fibroblasts and a combination of CRISPR-mediated gene editing and RNAi-mediated gene silencing in human cells, here we analyzed the consequences of PDS5 depletion for DNA replication. We found that either PDS5A or PDS5B is sufficient for proper cohesin dynamics and that their simultaneous removal increases cohesin's residence time on chromatin and slows down DNA replication. A similar phenotype was observed in WAPL-depleted cells. Cohesin down-regulation restored normal replication fork rates in PDS5-deficient cells, suggesting that chromatin-bound cohesin hinders the advance of the replisome. We further show that PDS5 proteins are required to recruit WRN helicase-interacting protein 1 (WRNIP1), RAD51 recombinase (RAD51), and BRCA2 DNA repair associated (BRCA2) to stalled forks and that in their absence, nascent DNA strands at unprotected forks are degraded by MRE11 homolog double-strand break repair nuclease (MRE11). These findings indicate that PDS5 proteins participate in replication fork protection and also provide insights into how cohesin and its regulators contribute to the response to replication stress, a common feature of cancer cells. American Society for Biochemistry and Molecular Biology 2020-01-03 2019-11-22 /pmc/articles/PMC6952610/ /pubmed/31757807 http://dx.doi.org/10.1074/jbc.RA119.011099 Text en © 2020 Morales et al. Author's Choice—Final version open access under the terms of the Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle DNA and Chromosomes
Morales, Carmen
Ruiz-Torres, Miguel
Rodríguez-Acebes, Sara
Lafarga, Vanesa
Rodríguez-Corsino, Miriam
Megías, Diego
Cisneros, David A.
Peters, Jan-Michael
Méndez, Juan
Losada, Ana
PDS5 proteins are required for proper cohesin dynamics and participate in replication fork protection
title PDS5 proteins are required for proper cohesin dynamics and participate in replication fork protection
title_full PDS5 proteins are required for proper cohesin dynamics and participate in replication fork protection
title_fullStr PDS5 proteins are required for proper cohesin dynamics and participate in replication fork protection
title_full_unstemmed PDS5 proteins are required for proper cohesin dynamics and participate in replication fork protection
title_short PDS5 proteins are required for proper cohesin dynamics and participate in replication fork protection
title_sort pds5 proteins are required for proper cohesin dynamics and participate in replication fork protection
topic DNA and Chromosomes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6952610/
https://www.ncbi.nlm.nih.gov/pubmed/31757807
http://dx.doi.org/10.1074/jbc.RA119.011099
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