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Enhanced expression and phosphorylation of Sirt7 activates smad2 and ERK signaling and promotes the cardiac fibrosis differentiation upon angiotensin-II stimulation

Cardiac fibroblasts (CFs) phenotypic conversion to myofibroblasts (MFs) represents a crucial event in cardiac fibrosis that leads to impaired cardiac function. However, regulation of this phenotypic transformation remains unclear. Here, we showed that sirtuin-7 (Sirt7) plays an important role in the...

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Autores principales: Wang, Haichen, Liu, Shengwu, Liu, Shengqiang, Wei, Wei, Zhou, Xiaolong, Lin, Fang, Wang, Juanjuan, Chen, Jinye, Zhang, Guodong, Pang, Yongbing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5459426/
https://www.ncbi.nlm.nih.gov/pubmed/28582407
http://dx.doi.org/10.1371/journal.pone.0178530
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author Wang, Haichen
Liu, Shengwu
Liu, Shengqiang
Wei, Wei
Zhou, Xiaolong
Lin, Fang
Wang, Juanjuan
Chen, Jinye
Zhang, Guodong
Pang, Yongbing
author_facet Wang, Haichen
Liu, Shengwu
Liu, Shengqiang
Wei, Wei
Zhou, Xiaolong
Lin, Fang
Wang, Juanjuan
Chen, Jinye
Zhang, Guodong
Pang, Yongbing
author_sort Wang, Haichen
collection PubMed
description Cardiac fibroblasts (CFs) phenotypic conversion to myofibroblasts (MFs) represents a crucial event in cardiac fibrosis that leads to impaired cardiac function. However, regulation of this phenotypic transformation remains unclear. Here, we showed that sirtuin-7 (Sirt7) plays an important role in the regulation of MFs differentiation. Sirt7 expression and phosphorylation were upregulated in CFs upon angiotensin-II (Ang-II) stimulation. Sirt7 depletion by siRNA in CFs resulted in decreased cell proliferation and extracellular matrix (ECM) deposition. Further, examination of Sirt7-depleted CFs demonstrated significantly lower expression of α-smooth muscle actin (α-SMA), the classical marker of MFs differentiation, and decreased formation of focal adhesions. Moreover, overexpression of Sirt7 increased α-SMA expression in Ang-II treated CFs and exacerbated Ang-II-induced MFs differentiation. Moreover, Sirt7 depletion could largely reverse Ang-II induced increase of nuclear translocalization and activity of smad2 and extracellular regulated kinases (ERK) in CFs. Importantly, the increased differentiation of CFs to MFs was also abolished by smad2 siRNA or U0126. Our findings reveal a novel role of Sirt7 and its phosphorylation in the phenotypic conversion of CFs to MFs and might lead to the development of new therapeutic and prognostic tools for cardiac fibrosis.
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spelling pubmed-54594262017-06-15 Enhanced expression and phosphorylation of Sirt7 activates smad2 and ERK signaling and promotes the cardiac fibrosis differentiation upon angiotensin-II stimulation Wang, Haichen Liu, Shengwu Liu, Shengqiang Wei, Wei Zhou, Xiaolong Lin, Fang Wang, Juanjuan Chen, Jinye Zhang, Guodong Pang, Yongbing PLoS One Research Article Cardiac fibroblasts (CFs) phenotypic conversion to myofibroblasts (MFs) represents a crucial event in cardiac fibrosis that leads to impaired cardiac function. However, regulation of this phenotypic transformation remains unclear. Here, we showed that sirtuin-7 (Sirt7) plays an important role in the regulation of MFs differentiation. Sirt7 expression and phosphorylation were upregulated in CFs upon angiotensin-II (Ang-II) stimulation. Sirt7 depletion by siRNA in CFs resulted in decreased cell proliferation and extracellular matrix (ECM) deposition. Further, examination of Sirt7-depleted CFs demonstrated significantly lower expression of α-smooth muscle actin (α-SMA), the classical marker of MFs differentiation, and decreased formation of focal adhesions. Moreover, overexpression of Sirt7 increased α-SMA expression in Ang-II treated CFs and exacerbated Ang-II-induced MFs differentiation. Moreover, Sirt7 depletion could largely reverse Ang-II induced increase of nuclear translocalization and activity of smad2 and extracellular regulated kinases (ERK) in CFs. Importantly, the increased differentiation of CFs to MFs was also abolished by smad2 siRNA or U0126. Our findings reveal a novel role of Sirt7 and its phosphorylation in the phenotypic conversion of CFs to MFs and might lead to the development of new therapeutic and prognostic tools for cardiac fibrosis. Public Library of Science 2017-06-05 /pmc/articles/PMC5459426/ /pubmed/28582407 http://dx.doi.org/10.1371/journal.pone.0178530 Text en © 2017 Wang et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Wang, Haichen
Liu, Shengwu
Liu, Shengqiang
Wei, Wei
Zhou, Xiaolong
Lin, Fang
Wang, Juanjuan
Chen, Jinye
Zhang, Guodong
Pang, Yongbing
Enhanced expression and phosphorylation of Sirt7 activates smad2 and ERK signaling and promotes the cardiac fibrosis differentiation upon angiotensin-II stimulation
title Enhanced expression and phosphorylation of Sirt7 activates smad2 and ERK signaling and promotes the cardiac fibrosis differentiation upon angiotensin-II stimulation
title_full Enhanced expression and phosphorylation of Sirt7 activates smad2 and ERK signaling and promotes the cardiac fibrosis differentiation upon angiotensin-II stimulation
title_fullStr Enhanced expression and phosphorylation of Sirt7 activates smad2 and ERK signaling and promotes the cardiac fibrosis differentiation upon angiotensin-II stimulation
title_full_unstemmed Enhanced expression and phosphorylation of Sirt7 activates smad2 and ERK signaling and promotes the cardiac fibrosis differentiation upon angiotensin-II stimulation
title_short Enhanced expression and phosphorylation of Sirt7 activates smad2 and ERK signaling and promotes the cardiac fibrosis differentiation upon angiotensin-II stimulation
title_sort enhanced expression and phosphorylation of sirt7 activates smad2 and erk signaling and promotes the cardiac fibrosis differentiation upon angiotensin-ii stimulation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5459426/
https://www.ncbi.nlm.nih.gov/pubmed/28582407
http://dx.doi.org/10.1371/journal.pone.0178530
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