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The p53/miRNAs/Ccna2 pathway serves as a novel regulator of cellular senescence: Complement of the canonical p53/p21 pathway

Aging is a multifactorial process characterized by the progressive deterioration of physiological functions. Among the multiple molecular mechanisms, microRNAs (miRNAs) have increasingly been implicated in the regulation of Aging process. However, the contribution of miRNAs to physiological Aging an...

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Autores principales: Xu, Shun, Wu, Weijia, Huang, Haijiao, Huang, Ruxiao, Xie, Luoyijun, Su, Ailing, Liu, Shuang, Zheng, Ruinian, Yuan, Yuan, Zheng, Hui‐ling, Sun, Xuerong, Xiong, Xing‐dong, Liu, Xinguang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6516184/
https://www.ncbi.nlm.nih.gov/pubmed/30848072
http://dx.doi.org/10.1111/acel.12918
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author Xu, Shun
Wu, Weijia
Huang, Haijiao
Huang, Ruxiao
Xie, Luoyijun
Su, Ailing
Liu, Shuang
Zheng, Ruinian
Yuan, Yuan
Zheng, Hui‐ling
Sun, Xuerong
Xiong, Xing‐dong
Liu, Xinguang
author_facet Xu, Shun
Wu, Weijia
Huang, Haijiao
Huang, Ruxiao
Xie, Luoyijun
Su, Ailing
Liu, Shuang
Zheng, Ruinian
Yuan, Yuan
Zheng, Hui‐ling
Sun, Xuerong
Xiong, Xing‐dong
Liu, Xinguang
author_sort Xu, Shun
collection PubMed
description Aging is a multifactorial process characterized by the progressive deterioration of physiological functions. Among the multiple molecular mechanisms, microRNAs (miRNAs) have increasingly been implicated in the regulation of Aging process. However, the contribution of miRNAs to physiological Aging and the underlying mechanisms remain elusive. We herein performed high‐throughput analysis using miRNA and mRNA microarray in the physiological Aging mouse, attempted to deepen into the understanding of the effects of miRNAs on Aging process at the “network” level. The data showed that various p53 responsive miRNAs, including miR‐124, miR‐34a and miR‐29a/b/c, were up‐regulated in Aging mouse compared with that in Young mouse. Further investigation unraveled that similar as miR‐34a and miR‐29, miR‐124 significantly promoted cellular senescence. As expected, mRNA microarray and gene co‐expression network analysis unveiled that the most down‐regulated mRNAs were enriched in the regulatory pathways of cell proliferation. Fascinatingly, among these down‐regulated mRNAs, Ccna2 stood out as a common target of several p53 responsive miRNAs (miR‐124 and miR‐29), which functioned as the antagonist of p21 in cell cycle regulation. Silencing of Ccna2 remarkably triggered the cellular senescence, while Ccna2 overexpression delayed cellular senescence and significantly reversed the senescence‐induction effect of miR‐124 and miR‐29. Moreover, these p53 responsive miRNAs were significantly up‐regulated during the senescence process of p21‐deficient cells; overexpression of p53 responsive miRNAs or knockdown of Ccna2 evidently accelerated the cellular senescence in the absence of p21. Taken together, our data suggested that the p53/miRNAs/Ccna2 pathway might serve as a novel senescence modulator independent of p53/p21 pathway.
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spelling pubmed-65161842019-06-01 The p53/miRNAs/Ccna2 pathway serves as a novel regulator of cellular senescence: Complement of the canonical p53/p21 pathway Xu, Shun Wu, Weijia Huang, Haijiao Huang, Ruxiao Xie, Luoyijun Su, Ailing Liu, Shuang Zheng, Ruinian Yuan, Yuan Zheng, Hui‐ling Sun, Xuerong Xiong, Xing‐dong Liu, Xinguang Aging Cell Original Articles Aging is a multifactorial process characterized by the progressive deterioration of physiological functions. Among the multiple molecular mechanisms, microRNAs (miRNAs) have increasingly been implicated in the regulation of Aging process. However, the contribution of miRNAs to physiological Aging and the underlying mechanisms remain elusive. We herein performed high‐throughput analysis using miRNA and mRNA microarray in the physiological Aging mouse, attempted to deepen into the understanding of the effects of miRNAs on Aging process at the “network” level. The data showed that various p53 responsive miRNAs, including miR‐124, miR‐34a and miR‐29a/b/c, were up‐regulated in Aging mouse compared with that in Young mouse. Further investigation unraveled that similar as miR‐34a and miR‐29, miR‐124 significantly promoted cellular senescence. As expected, mRNA microarray and gene co‐expression network analysis unveiled that the most down‐regulated mRNAs were enriched in the regulatory pathways of cell proliferation. Fascinatingly, among these down‐regulated mRNAs, Ccna2 stood out as a common target of several p53 responsive miRNAs (miR‐124 and miR‐29), which functioned as the antagonist of p21 in cell cycle regulation. Silencing of Ccna2 remarkably triggered the cellular senescence, while Ccna2 overexpression delayed cellular senescence and significantly reversed the senescence‐induction effect of miR‐124 and miR‐29. Moreover, these p53 responsive miRNAs were significantly up‐regulated during the senescence process of p21‐deficient cells; overexpression of p53 responsive miRNAs or knockdown of Ccna2 evidently accelerated the cellular senescence in the absence of p21. Taken together, our data suggested that the p53/miRNAs/Ccna2 pathway might serve as a novel senescence modulator independent of p53/p21 pathway. John Wiley and Sons Inc. 2019-03-07 2019-06 /pmc/articles/PMC6516184/ /pubmed/30848072 http://dx.doi.org/10.1111/acel.12918 Text en © 2019 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Xu, Shun
Wu, Weijia
Huang, Haijiao
Huang, Ruxiao
Xie, Luoyijun
Su, Ailing
Liu, Shuang
Zheng, Ruinian
Yuan, Yuan
Zheng, Hui‐ling
Sun, Xuerong
Xiong, Xing‐dong
Liu, Xinguang
The p53/miRNAs/Ccna2 pathway serves as a novel regulator of cellular senescence: Complement of the canonical p53/p21 pathway
title The p53/miRNAs/Ccna2 pathway serves as a novel regulator of cellular senescence: Complement of the canonical p53/p21 pathway
title_full The p53/miRNAs/Ccna2 pathway serves as a novel regulator of cellular senescence: Complement of the canonical p53/p21 pathway
title_fullStr The p53/miRNAs/Ccna2 pathway serves as a novel regulator of cellular senescence: Complement of the canonical p53/p21 pathway
title_full_unstemmed The p53/miRNAs/Ccna2 pathway serves as a novel regulator of cellular senescence: Complement of the canonical p53/p21 pathway
title_short The p53/miRNAs/Ccna2 pathway serves as a novel regulator of cellular senescence: Complement of the canonical p53/p21 pathway
title_sort p53/mirnas/ccna2 pathway serves as a novel regulator of cellular senescence: complement of the canonical p53/p21 pathway
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6516184/
https://www.ncbi.nlm.nih.gov/pubmed/30848072
http://dx.doi.org/10.1111/acel.12918
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