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SIRT1 Prevents R-Loops during Chronological Aging by Modulating DNA Replication at rDNA Loci

In metazoans, the largest sirtuin, SIRT1, is a nuclear protein implicated in epigenetic modifications, circadian signaling, DNA recombination, replication, and repair. Our previous studies have demonstrated that SIRT1 binds replication origins and inhibits replication initiation from a group of pote...

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Autores principales: Thakur, Bhushan L., Kusi, Nana A., Mosavarpour, Sara, Zhu, Roger, Redon, Christophe E., Fu, Haiqing, Dhall, Anjali, Pongor, Lorinc S., Sebastian, Robin, Indig, Fred E., Aladjem, Mirit I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10669956/
https://www.ncbi.nlm.nih.gov/pubmed/37998365
http://dx.doi.org/10.3390/cells12222630
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author Thakur, Bhushan L.
Kusi, Nana A.
Mosavarpour, Sara
Zhu, Roger
Redon, Christophe E.
Fu, Haiqing
Dhall, Anjali
Pongor, Lorinc S.
Sebastian, Robin
Indig, Fred E.
Aladjem, Mirit I.
author_facet Thakur, Bhushan L.
Kusi, Nana A.
Mosavarpour, Sara
Zhu, Roger
Redon, Christophe E.
Fu, Haiqing
Dhall, Anjali
Pongor, Lorinc S.
Sebastian, Robin
Indig, Fred E.
Aladjem, Mirit I.
author_sort Thakur, Bhushan L.
collection PubMed
description In metazoans, the largest sirtuin, SIRT1, is a nuclear protein implicated in epigenetic modifications, circadian signaling, DNA recombination, replication, and repair. Our previous studies have demonstrated that SIRT1 binds replication origins and inhibits replication initiation from a group of potential initiation sites (dormant origins). We studied the effects of aging and SIRT1 activity on replication origin usage and the incidence of transcription–replication collisions (creating R-loop structures) in adult human cells obtained at different time points during chronological aging and in cancer cells. In primary, untransformed cells, SIRT1 activity declined and the prevalence of R-loops rose with chronological aging. Both the reduction in SIRT1 activity and the increased abundance of R-loops were also observed during the passage of primary cells in culture. All cells, regardless of donor age or transformation status, reacted to the short-term, acute chemical inhibition of SIRT1 with the activation of excessive replication initiation events coincident with an increased prevalence of R-loops. However, cancer cells activated dormant replication origins, genome-wide, during long-term proliferation with mutated or depleted SIRT1, whereas, in primary cells, the aging-associated SIRT1-mediated activation of dormant origins was restricted to rDNA loci. These observations suggest that chronological aging and the associated decline in SIRT1 activity relax the regulatory networks that protect cells against excess replication and that the mechanisms protecting from replication–transcription collisions at the rDNA loci manifest as differentially enhanced sensitivities to SIRT1 decline and chronological aging.
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spelling pubmed-106699562023-11-15 SIRT1 Prevents R-Loops during Chronological Aging by Modulating DNA Replication at rDNA Loci Thakur, Bhushan L. Kusi, Nana A. Mosavarpour, Sara Zhu, Roger Redon, Christophe E. Fu, Haiqing Dhall, Anjali Pongor, Lorinc S. Sebastian, Robin Indig, Fred E. Aladjem, Mirit I. Cells Article In metazoans, the largest sirtuin, SIRT1, is a nuclear protein implicated in epigenetic modifications, circadian signaling, DNA recombination, replication, and repair. Our previous studies have demonstrated that SIRT1 binds replication origins and inhibits replication initiation from a group of potential initiation sites (dormant origins). We studied the effects of aging and SIRT1 activity on replication origin usage and the incidence of transcription–replication collisions (creating R-loop structures) in adult human cells obtained at different time points during chronological aging and in cancer cells. In primary, untransformed cells, SIRT1 activity declined and the prevalence of R-loops rose with chronological aging. Both the reduction in SIRT1 activity and the increased abundance of R-loops were also observed during the passage of primary cells in culture. All cells, regardless of donor age or transformation status, reacted to the short-term, acute chemical inhibition of SIRT1 with the activation of excessive replication initiation events coincident with an increased prevalence of R-loops. However, cancer cells activated dormant replication origins, genome-wide, during long-term proliferation with mutated or depleted SIRT1, whereas, in primary cells, the aging-associated SIRT1-mediated activation of dormant origins was restricted to rDNA loci. These observations suggest that chronological aging and the associated decline in SIRT1 activity relax the regulatory networks that protect cells against excess replication and that the mechanisms protecting from replication–transcription collisions at the rDNA loci manifest as differentially enhanced sensitivities to SIRT1 decline and chronological aging. MDPI 2023-11-15 /pmc/articles/PMC10669956/ /pubmed/37998365 http://dx.doi.org/10.3390/cells12222630 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Thakur, Bhushan L.
Kusi, Nana A.
Mosavarpour, Sara
Zhu, Roger
Redon, Christophe E.
Fu, Haiqing
Dhall, Anjali
Pongor, Lorinc S.
Sebastian, Robin
Indig, Fred E.
Aladjem, Mirit I.
SIRT1 Prevents R-Loops during Chronological Aging by Modulating DNA Replication at rDNA Loci
title SIRT1 Prevents R-Loops during Chronological Aging by Modulating DNA Replication at rDNA Loci
title_full SIRT1 Prevents R-Loops during Chronological Aging by Modulating DNA Replication at rDNA Loci
title_fullStr SIRT1 Prevents R-Loops during Chronological Aging by Modulating DNA Replication at rDNA Loci
title_full_unstemmed SIRT1 Prevents R-Loops during Chronological Aging by Modulating DNA Replication at rDNA Loci
title_short SIRT1 Prevents R-Loops during Chronological Aging by Modulating DNA Replication at rDNA Loci
title_sort sirt1 prevents r-loops during chronological aging by modulating dna replication at rdna loci
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10669956/
https://www.ncbi.nlm.nih.gov/pubmed/37998365
http://dx.doi.org/10.3390/cells12222630
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