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Lamin A/C recruits ssDNA protective proteins RPA and RAD51 to stalled replication forks to maintain fork stability

Lamin A/C provides a nuclear scaffold for compartmentalization of genome function that is important for genome integrity. Lamin A/C dysfunction is associated with cancer, aging, and degenerative diseases. The mechanisms whereby lamin A/C regulates genome stability remain poorly understood. We demons...

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Autores principales: Graziano, Simona, Coll-Bonfill, Nuria, Teodoro-Castro, Barbara, Kuppa, Sahiti, Jackson, Jessica, Shashkova, Elena, Mahajan, Urvashi, Vindigni, Alessandro, Antony, Edwin, Gonzalo, Susana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8571089/
https://www.ncbi.nlm.nih.gov/pubmed/34648766
http://dx.doi.org/10.1016/j.jbc.2021.101301
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author Graziano, Simona
Coll-Bonfill, Nuria
Teodoro-Castro, Barbara
Kuppa, Sahiti
Jackson, Jessica
Shashkova, Elena
Mahajan, Urvashi
Vindigni, Alessandro
Antony, Edwin
Gonzalo, Susana
author_facet Graziano, Simona
Coll-Bonfill, Nuria
Teodoro-Castro, Barbara
Kuppa, Sahiti
Jackson, Jessica
Shashkova, Elena
Mahajan, Urvashi
Vindigni, Alessandro
Antony, Edwin
Gonzalo, Susana
author_sort Graziano, Simona
collection PubMed
description Lamin A/C provides a nuclear scaffold for compartmentalization of genome function that is important for genome integrity. Lamin A/C dysfunction is associated with cancer, aging, and degenerative diseases. The mechanisms whereby lamin A/C regulates genome stability remain poorly understood. We demonstrate a crucial role for lamin A/C in DNA replication. Lamin A/C binds to nascent DNA, especially during replication stress (RS), ensuring the recruitment of replication fork protective factors RPA and RAD51. These ssDNA-binding proteins, considered the first and second responders to RS respectively, function in the stabilization, remodeling, and repair of the stalled fork to ensure proper restart and genome stability. Reduced recruitment of RPA and RAD51 upon lamin A/C depletion elicits replication fork instability (RFI) characterized by MRE11 nuclease–mediated degradation of nascent DNA, RS-induced DNA damage, and sensitivity to replication inhibitors. Importantly, unlike homologous recombination–deficient cells, RFI in lamin A/C-depleted cells is not linked to replication fork reversal. Thus, the point of entry of nucleases is not the reversed fork but regions of ssDNA generated during RS that are not protected by RPA and RAD51. Consistently, RFI in lamin A/C-depleted cells is rescued by exogenous overexpression of RPA or RAD51. These data unveil involvement of structural nuclear proteins in the protection of ssDNA from nucleases during RS by promoting recruitment of RPA and RAD51 to stalled forks. Supporting this model, we show physical interaction between RPA and lamin A/C. We suggest that RS is a major source of genomic instability in laminopathies and lamin A/C-deficient tumors.
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spelling pubmed-85710892021-11-10 Lamin A/C recruits ssDNA protective proteins RPA and RAD51 to stalled replication forks to maintain fork stability Graziano, Simona Coll-Bonfill, Nuria Teodoro-Castro, Barbara Kuppa, Sahiti Jackson, Jessica Shashkova, Elena Mahajan, Urvashi Vindigni, Alessandro Antony, Edwin Gonzalo, Susana J Biol Chem Research Article Lamin A/C provides a nuclear scaffold for compartmentalization of genome function that is important for genome integrity. Lamin A/C dysfunction is associated with cancer, aging, and degenerative diseases. The mechanisms whereby lamin A/C regulates genome stability remain poorly understood. We demonstrate a crucial role for lamin A/C in DNA replication. Lamin A/C binds to nascent DNA, especially during replication stress (RS), ensuring the recruitment of replication fork protective factors RPA and RAD51. These ssDNA-binding proteins, considered the first and second responders to RS respectively, function in the stabilization, remodeling, and repair of the stalled fork to ensure proper restart and genome stability. Reduced recruitment of RPA and RAD51 upon lamin A/C depletion elicits replication fork instability (RFI) characterized by MRE11 nuclease–mediated degradation of nascent DNA, RS-induced DNA damage, and sensitivity to replication inhibitors. Importantly, unlike homologous recombination–deficient cells, RFI in lamin A/C-depleted cells is not linked to replication fork reversal. Thus, the point of entry of nucleases is not the reversed fork but regions of ssDNA generated during RS that are not protected by RPA and RAD51. Consistently, RFI in lamin A/C-depleted cells is rescued by exogenous overexpression of RPA or RAD51. These data unveil involvement of structural nuclear proteins in the protection of ssDNA from nucleases during RS by promoting recruitment of RPA and RAD51 to stalled forks. Supporting this model, we show physical interaction between RPA and lamin A/C. We suggest that RS is a major source of genomic instability in laminopathies and lamin A/C-deficient tumors. American Society for Biochemistry and Molecular Biology 2021-10-11 /pmc/articles/PMC8571089/ /pubmed/34648766 http://dx.doi.org/10.1016/j.jbc.2021.101301 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Graziano, Simona
Coll-Bonfill, Nuria
Teodoro-Castro, Barbara
Kuppa, Sahiti
Jackson, Jessica
Shashkova, Elena
Mahajan, Urvashi
Vindigni, Alessandro
Antony, Edwin
Gonzalo, Susana
Lamin A/C recruits ssDNA protective proteins RPA and RAD51 to stalled replication forks to maintain fork stability
title Lamin A/C recruits ssDNA protective proteins RPA and RAD51 to stalled replication forks to maintain fork stability
title_full Lamin A/C recruits ssDNA protective proteins RPA and RAD51 to stalled replication forks to maintain fork stability
title_fullStr Lamin A/C recruits ssDNA protective proteins RPA and RAD51 to stalled replication forks to maintain fork stability
title_full_unstemmed Lamin A/C recruits ssDNA protective proteins RPA and RAD51 to stalled replication forks to maintain fork stability
title_short Lamin A/C recruits ssDNA protective proteins RPA and RAD51 to stalled replication forks to maintain fork stability
title_sort lamin a/c recruits ssdna protective proteins rpa and rad51 to stalled replication forks to maintain fork stability
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8571089/
https://www.ncbi.nlm.nih.gov/pubmed/34648766
http://dx.doi.org/10.1016/j.jbc.2021.101301
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