Cargando…

The PPARγ‐SETD8 axis constitutes an epigenetic, p53‐independent checkpoint on p21‐mediated cellular senescence

Cellular senescence is a permanent proliferative arrest triggered by genome instability or aberrant growth stresses, acting as a protective or even tumor‐suppressive mechanism. While several key aspects of gene regulation have been known to program this cessation of cell growth, the involvement of t...

Descripción completa

Detalles Bibliográficos
Autores principales: Shih, Chieh‐Tien, Chang, Yi‐Feng, Chen, Yi‐Tung, Ma, Chung‐Pei, Chen, Hui‐Wen, Yang, Chang‐Ching, Lu, Juu‐Chin, Tsai, Yau‐Sheng, Chen, Hua‐Chien, Tan, Bertrand Chin‐Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5506440/
https://www.ncbi.nlm.nih.gov/pubmed/28514051
http://dx.doi.org/10.1111/acel.12607
_version_ 1783249562758021120
author Shih, Chieh‐Tien
Chang, Yi‐Feng
Chen, Yi‐Tung
Ma, Chung‐Pei
Chen, Hui‐Wen
Yang, Chang‐Ching
Lu, Juu‐Chin
Tsai, Yau‐Sheng
Chen, Hua‐Chien
Tan, Bertrand Chin‐Ming
author_facet Shih, Chieh‐Tien
Chang, Yi‐Feng
Chen, Yi‐Tung
Ma, Chung‐Pei
Chen, Hui‐Wen
Yang, Chang‐Ching
Lu, Juu‐Chin
Tsai, Yau‐Sheng
Chen, Hua‐Chien
Tan, Bertrand Chin‐Ming
author_sort Shih, Chieh‐Tien
collection PubMed
description Cellular senescence is a permanent proliferative arrest triggered by genome instability or aberrant growth stresses, acting as a protective or even tumor‐suppressive mechanism. While several key aspects of gene regulation have been known to program this cessation of cell growth, the involvement of the epigenetic regulation has just emerged but remains largely unresolved. Using a systems approach that is based on targeted gene profiling, we uncovered known and novel chromatin modifiers with putative link to the senescent state of the cells. Among these, we identified SETD8 as a new target as well as a key regulator of the cellular senescence signaling. Knockdown of SETD8 triggered senescence induction in proliferative culture, irrespectively of the p53 status of the cells; ectopic expression of this epigenetic writer alleviated the extent doxorubicin‐induced cellular senescence. This repressive effect of SETD8 in senescence was mediated by directly maintaining the silencing mark H4K20me1 at the locus of the senescence switch gene p21. Further in support of this regulatory link, depletion of p21 reversed this SETD8‐mediated cellular senescence. Additionally, we found that PPARγ acts upstream and regulates SETD8 expression in proliferating cells. Downregulation of PPARγ coincided with the senescence induction, while its activation inhibited the progression of this process. Viewed together, our findings delineated a new epigenetic pathway through which the PPARγ‐SETD8 axis directly silences p21 expression and consequently impinges on its senescence‐inducing function. This implies that SETD8 may be part of a cell proliferation checkpoint mechanism and has important implications in antitumor therapeutics.
format Online
Article
Text
id pubmed-5506440
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-55064402017-08-01 The PPARγ‐SETD8 axis constitutes an epigenetic, p53‐independent checkpoint on p21‐mediated cellular senescence Shih, Chieh‐Tien Chang, Yi‐Feng Chen, Yi‐Tung Ma, Chung‐Pei Chen, Hui‐Wen Yang, Chang‐Ching Lu, Juu‐Chin Tsai, Yau‐Sheng Chen, Hua‐Chien Tan, Bertrand Chin‐Ming Aging Cell Original Articles Cellular senescence is a permanent proliferative arrest triggered by genome instability or aberrant growth stresses, acting as a protective or even tumor‐suppressive mechanism. While several key aspects of gene regulation have been known to program this cessation of cell growth, the involvement of the epigenetic regulation has just emerged but remains largely unresolved. Using a systems approach that is based on targeted gene profiling, we uncovered known and novel chromatin modifiers with putative link to the senescent state of the cells. Among these, we identified SETD8 as a new target as well as a key regulator of the cellular senescence signaling. Knockdown of SETD8 triggered senescence induction in proliferative culture, irrespectively of the p53 status of the cells; ectopic expression of this epigenetic writer alleviated the extent doxorubicin‐induced cellular senescence. This repressive effect of SETD8 in senescence was mediated by directly maintaining the silencing mark H4K20me1 at the locus of the senescence switch gene p21. Further in support of this regulatory link, depletion of p21 reversed this SETD8‐mediated cellular senescence. Additionally, we found that PPARγ acts upstream and regulates SETD8 expression in proliferating cells. Downregulation of PPARγ coincided with the senescence induction, while its activation inhibited the progression of this process. Viewed together, our findings delineated a new epigenetic pathway through which the PPARγ‐SETD8 axis directly silences p21 expression and consequently impinges on its senescence‐inducing function. This implies that SETD8 may be part of a cell proliferation checkpoint mechanism and has important implications in antitumor therapeutics. John Wiley and Sons Inc. 2017-05-17 2017-08 /pmc/articles/PMC5506440/ /pubmed/28514051 http://dx.doi.org/10.1111/acel.12607 Text en © 2017 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 Creative Commons Attribution (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
Shih, Chieh‐Tien
Chang, Yi‐Feng
Chen, Yi‐Tung
Ma, Chung‐Pei
Chen, Hui‐Wen
Yang, Chang‐Ching
Lu, Juu‐Chin
Tsai, Yau‐Sheng
Chen, Hua‐Chien
Tan, Bertrand Chin‐Ming
The PPARγ‐SETD8 axis constitutes an epigenetic, p53‐independent checkpoint on p21‐mediated cellular senescence
title The PPARγ‐SETD8 axis constitutes an epigenetic, p53‐independent checkpoint on p21‐mediated cellular senescence
title_full The PPARγ‐SETD8 axis constitutes an epigenetic, p53‐independent checkpoint on p21‐mediated cellular senescence
title_fullStr The PPARγ‐SETD8 axis constitutes an epigenetic, p53‐independent checkpoint on p21‐mediated cellular senescence
title_full_unstemmed The PPARγ‐SETD8 axis constitutes an epigenetic, p53‐independent checkpoint on p21‐mediated cellular senescence
title_short The PPARγ‐SETD8 axis constitutes an epigenetic, p53‐independent checkpoint on p21‐mediated cellular senescence
title_sort pparγ‐setd8 axis constitutes an epigenetic, p53‐independent checkpoint on p21‐mediated cellular senescence
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5506440/
https://www.ncbi.nlm.nih.gov/pubmed/28514051
http://dx.doi.org/10.1111/acel.12607
work_keys_str_mv AT shihchiehtien theppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT changyifeng theppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT chenyitung theppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT machungpei theppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT chenhuiwen theppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT yangchangching theppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT lujuuchin theppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT tsaiyausheng theppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT chenhuachien theppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT tanbertrandchinming theppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT shihchiehtien ppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT changyifeng ppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT chenyitung ppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT machungpei ppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT chenhuiwen ppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT yangchangching ppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT lujuuchin ppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT tsaiyausheng ppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT chenhuachien ppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence
AT tanbertrandchinming ppargsetd8axisconstitutesanepigeneticp53independentcheckpointonp21mediatedcellularsenescence