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CBX4 Regulates Replicative Senescence of WI-38 Fibroblasts

Cellular senescence is characterized by cell cycle arrest and senescence-associated secretory phenotypes. Cellular senescence can be caused by various stress stimuli such as DNA damage, oxidative stress, and telomere attrition and is related to several chronic diseases, including atherosclerosis, Al...

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Autores principales: Chen, Yu-Hsiu, Zhang, Xin, Ko, Kuei-Yueh, Hsueh, Ming-Feng, Kraus, Virginia Byers
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8890863/
https://www.ncbi.nlm.nih.gov/pubmed/35251476
http://dx.doi.org/10.1155/2022/5503575
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author Chen, Yu-Hsiu
Zhang, Xin
Ko, Kuei-Yueh
Hsueh, Ming-Feng
Kraus, Virginia Byers
author_facet Chen, Yu-Hsiu
Zhang, Xin
Ko, Kuei-Yueh
Hsueh, Ming-Feng
Kraus, Virginia Byers
author_sort Chen, Yu-Hsiu
collection PubMed
description Cellular senescence is characterized by cell cycle arrest and senescence-associated secretory phenotypes. Cellular senescence can be caused by various stress stimuli such as DNA damage, oxidative stress, and telomere attrition and is related to several chronic diseases, including atherosclerosis, Alzheimer's disease, and osteoarthritis. Chromobox homolog 4 (CBX4) has been shown to alleviate cellular senescence in human mesenchymal stem cells and is considered a possible target for senomorphic treatment. Here, we explored whether CBX4 expression is associated with replicative senescence in WI-38 fibroblasts, a classic human senescence model system. We also examined whether and how regulation of CBX4 modifies the senescence phenotype and functions as an antisenescence target in WI-38. During the serial culture of the WI-38 primary fibroblast cell line to a senescent state, we found increased expression of senescence markers, including senescence β-galactosidase (SA-βgal) activity, protein expression of p16, p21, and DPP4, and decreased proliferation marker EdU; moreover, CBX4 protein expression declined. With knockdown of CBX4, SA-βgal activity and p16 protein expression increased, and EdU decreased. With the activation of CBX4, SA-βgal activity, p16, and DPP4 protein decreased. In addition, CBX4 knockdown increased, while CBX4 activation decreased, gene expression of both CDKN2A (encoding the p16 protein) and DPP4. Genes related to DNA damage and cell cycle pathways were regulated by CBX4. These results demonstrate that CBX4 can regulate replicative senescence in a manner consistent with a senomorphic agent.
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spelling pubmed-88908632022-03-03 CBX4 Regulates Replicative Senescence of WI-38 Fibroblasts Chen, Yu-Hsiu Zhang, Xin Ko, Kuei-Yueh Hsueh, Ming-Feng Kraus, Virginia Byers Oxid Med Cell Longev Research Article Cellular senescence is characterized by cell cycle arrest and senescence-associated secretory phenotypes. Cellular senescence can be caused by various stress stimuli such as DNA damage, oxidative stress, and telomere attrition and is related to several chronic diseases, including atherosclerosis, Alzheimer's disease, and osteoarthritis. Chromobox homolog 4 (CBX4) has been shown to alleviate cellular senescence in human mesenchymal stem cells and is considered a possible target for senomorphic treatment. Here, we explored whether CBX4 expression is associated with replicative senescence in WI-38 fibroblasts, a classic human senescence model system. We also examined whether and how regulation of CBX4 modifies the senescence phenotype and functions as an antisenescence target in WI-38. During the serial culture of the WI-38 primary fibroblast cell line to a senescent state, we found increased expression of senescence markers, including senescence β-galactosidase (SA-βgal) activity, protein expression of p16, p21, and DPP4, and decreased proliferation marker EdU; moreover, CBX4 protein expression declined. With knockdown of CBX4, SA-βgal activity and p16 protein expression increased, and EdU decreased. With the activation of CBX4, SA-βgal activity, p16, and DPP4 protein decreased. In addition, CBX4 knockdown increased, while CBX4 activation decreased, gene expression of both CDKN2A (encoding the p16 protein) and DPP4. Genes related to DNA damage and cell cycle pathways were regulated by CBX4. These results demonstrate that CBX4 can regulate replicative senescence in a manner consistent with a senomorphic agent. Hindawi 2022-02-23 /pmc/articles/PMC8890863/ /pubmed/35251476 http://dx.doi.org/10.1155/2022/5503575 Text en Copyright © 2022 Yu-Hsiu Chen et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Chen, Yu-Hsiu
Zhang, Xin
Ko, Kuei-Yueh
Hsueh, Ming-Feng
Kraus, Virginia Byers
CBX4 Regulates Replicative Senescence of WI-38 Fibroblasts
title CBX4 Regulates Replicative Senescence of WI-38 Fibroblasts
title_full CBX4 Regulates Replicative Senescence of WI-38 Fibroblasts
title_fullStr CBX4 Regulates Replicative Senescence of WI-38 Fibroblasts
title_full_unstemmed CBX4 Regulates Replicative Senescence of WI-38 Fibroblasts
title_short CBX4 Regulates Replicative Senescence of WI-38 Fibroblasts
title_sort cbx4 regulates replicative senescence of wi-38 fibroblasts
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8890863/
https://www.ncbi.nlm.nih.gov/pubmed/35251476
http://dx.doi.org/10.1155/2022/5503575
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