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Nucleolar stress induces a senescence-like phenotype in smooth muscle cells and promotes development of vascular degeneration

Senescence of smooth muscle cells (SMCs) has a crucial role in the pathogenesis of abdominal aortic aneurysm (AAA), a disease of vascular degeneration. Perturbation of cellular ribosomal DNA (rDNA) transcription triggers nucleolar stress response. Previously we demonstrated that induction of nucleol...

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Autores principales: Zhang, Wenjing, Cheng, Wen, Parlato, Rosanna, Guo, Xiaosun, Cui, Xiaopei, Dai, Chaochao, Xu, Lei, Zhu, Jiankang, Zhu, Min, Luo, Kun, Zhang, Wencheng, Dong, Bo, Wang, Jianli, Jiang, Fan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7695416/
https://www.ncbi.nlm.nih.gov/pubmed/33146634
http://dx.doi.org/10.18632/aging.104094
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author Zhang, Wenjing
Cheng, Wen
Parlato, Rosanna
Guo, Xiaosun
Cui, Xiaopei
Dai, Chaochao
Xu, Lei
Zhu, Jiankang
Zhu, Min
Luo, Kun
Zhang, Wencheng
Dong, Bo
Wang, Jianli
Jiang, Fan
author_facet Zhang, Wenjing
Cheng, Wen
Parlato, Rosanna
Guo, Xiaosun
Cui, Xiaopei
Dai, Chaochao
Xu, Lei
Zhu, Jiankang
Zhu, Min
Luo, Kun
Zhang, Wencheng
Dong, Bo
Wang, Jianli
Jiang, Fan
author_sort Zhang, Wenjing
collection PubMed
description Senescence of smooth muscle cells (SMCs) has a crucial role in the pathogenesis of abdominal aortic aneurysm (AAA), a disease of vascular degeneration. Perturbation of cellular ribosomal DNA (rDNA) transcription triggers nucleolar stress response. Previously we demonstrated that induction of nucleolar stress in SMCs elicited cell cycle arrest via the ataxia-telangiectasia mutated (ATM)/ATM- and Rad3-related (ATR)-p53 axis. However, the specific roles of nucleolar stress in vascular degeneration remain unexplored. In the present study, we demonstrated for the first time that in both human and animal AAA tissues, there were non-coordinated changes in the expression of RNA polymerase I machinery components, including a downregulation of transcription initiation factor-IA (TIF-IA). Genetic deletion of TIF-IA in SMCs in mice (smTIF-IA(-/-)) caused spontaneous aneurysm-like lesions in the aorta. In vitro, induction of nucleolar stress triggered a non-canonical DNA damage response, leading to p53 phosphorylation and a senescence-like phenotype in SMCs. In human AAA tissues, there was increased nucleolar stress in medial cells, accompanied by localized DNA damage response within the nucleolar compartment. Our data suggest that perturbed rDNA transcription and induction of nucleolar stress contribute to the pathogenesis of AAA. Moreover, smTIF-IA(-/-) mice may be a novel animal model for studying spontaneous AAA-like vascular degenerations.
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spelling pubmed-76954162020-12-04 Nucleolar stress induces a senescence-like phenotype in smooth muscle cells and promotes development of vascular degeneration Zhang, Wenjing Cheng, Wen Parlato, Rosanna Guo, Xiaosun Cui, Xiaopei Dai, Chaochao Xu, Lei Zhu, Jiankang Zhu, Min Luo, Kun Zhang, Wencheng Dong, Bo Wang, Jianli Jiang, Fan Aging (Albany NY) Research Paper Senescence of smooth muscle cells (SMCs) has a crucial role in the pathogenesis of abdominal aortic aneurysm (AAA), a disease of vascular degeneration. Perturbation of cellular ribosomal DNA (rDNA) transcription triggers nucleolar stress response. Previously we demonstrated that induction of nucleolar stress in SMCs elicited cell cycle arrest via the ataxia-telangiectasia mutated (ATM)/ATM- and Rad3-related (ATR)-p53 axis. However, the specific roles of nucleolar stress in vascular degeneration remain unexplored. In the present study, we demonstrated for the first time that in both human and animal AAA tissues, there were non-coordinated changes in the expression of RNA polymerase I machinery components, including a downregulation of transcription initiation factor-IA (TIF-IA). Genetic deletion of TIF-IA in SMCs in mice (smTIF-IA(-/-)) caused spontaneous aneurysm-like lesions in the aorta. In vitro, induction of nucleolar stress triggered a non-canonical DNA damage response, leading to p53 phosphorylation and a senescence-like phenotype in SMCs. In human AAA tissues, there was increased nucleolar stress in medial cells, accompanied by localized DNA damage response within the nucleolar compartment. Our data suggest that perturbed rDNA transcription and induction of nucleolar stress contribute to the pathogenesis of AAA. Moreover, smTIF-IA(-/-) mice may be a novel animal model for studying spontaneous AAA-like vascular degenerations. Impact Journals 2020-11-04 /pmc/articles/PMC7695416/ /pubmed/33146634 http://dx.doi.org/10.18632/aging.104094 Text en Copyright: © 2020 Zhang et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Zhang, Wenjing
Cheng, Wen
Parlato, Rosanna
Guo, Xiaosun
Cui, Xiaopei
Dai, Chaochao
Xu, Lei
Zhu, Jiankang
Zhu, Min
Luo, Kun
Zhang, Wencheng
Dong, Bo
Wang, Jianli
Jiang, Fan
Nucleolar stress induces a senescence-like phenotype in smooth muscle cells and promotes development of vascular degeneration
title Nucleolar stress induces a senescence-like phenotype in smooth muscle cells and promotes development of vascular degeneration
title_full Nucleolar stress induces a senescence-like phenotype in smooth muscle cells and promotes development of vascular degeneration
title_fullStr Nucleolar stress induces a senescence-like phenotype in smooth muscle cells and promotes development of vascular degeneration
title_full_unstemmed Nucleolar stress induces a senescence-like phenotype in smooth muscle cells and promotes development of vascular degeneration
title_short Nucleolar stress induces a senescence-like phenotype in smooth muscle cells and promotes development of vascular degeneration
title_sort nucleolar stress induces a senescence-like phenotype in smooth muscle cells and promotes development of vascular degeneration
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7695416/
https://www.ncbi.nlm.nih.gov/pubmed/33146634
http://dx.doi.org/10.18632/aging.104094
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