Cargando…

Autophagy protein LC3 regulates the fibrosis of hypertrophic scar by controlling Bcl-xL in dermal fibroblasts

Hypertrophic scar (HS) is a serious skin fibrotic disease characterized by excessive hypercellularity and extracellular matrix (ECM) component deposition. Autophagy is a tightly regulated physiological process essential for cellular maintenance, differentiation, development and homeostasis. However,...

Descripción completa

Detalles Bibliográficos
Autores principales: Shi, Jihong, Shi, Shan, Wu, Bin, Zhang, Jian, Li, Yan, Wu, Xue, Zhang, Julei, Wang, Kejia, Zhao, Bin, Cai, Weixia, Bai, Xiaozhi, Hu, Dahai, Guan, Hao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5706833/
https://www.ncbi.nlm.nih.gov/pubmed/29212187
http://dx.doi.org/10.18632/oncotarget.20771
_version_ 1783282295421009920
author Shi, Jihong
Shi, Shan
Wu, Bin
Zhang, Jian
Li, Yan
Wu, Xue
Zhang, Julei
Wang, Kejia
Zhao, Bin
Cai, Weixia
Bai, Xiaozhi
Hu, Dahai
Guan, Hao
author_facet Shi, Jihong
Shi, Shan
Wu, Bin
Zhang, Jian
Li, Yan
Wu, Xue
Zhang, Julei
Wang, Kejia
Zhao, Bin
Cai, Weixia
Bai, Xiaozhi
Hu, Dahai
Guan, Hao
author_sort Shi, Jihong
collection PubMed
description Hypertrophic scar (HS) is a serious skin fibrotic disease characterized by excessive hypercellularity and extracellular matrix (ECM) component deposition. Autophagy is a tightly regulated physiological process essential for cellular maintenance, differentiation, development and homeostasis. However, during the formation of HS, whether and how autophagy is regulated in dermal fibroblasts are still far from elucidated. Here we detected the autophagic capacity in HS and normal skin (NS) counterparts, explored and verified the key regulatory molecules of autophagy in HS-derived fibroblasts (HSFs), and validated the data using rabbit ear scar model. Transmission electron microscopy (TEM) and immunostaining data showed that LC3-positive cells and autophagosomes in HS/HSFs were more intensive relative to those in NS/NSFs groups. Knockdown of LC3 (shLC3) could significantly block the expressionof type I collagen (Col 1, p < 0.01) and type III collagen (Col 3, p < 0.01) and thus inhibit the fibrosis of HSFs. shLC3 resistant to autophagy was shown to be Bcl-xL-, not Bcl-2-dependent, and silencing of Bcl-xL (sibcl-xL) significantly increased apoptosis of HSFs (p < 0.01). Immunofluorescence results showed that instead of inhibiting α-SMA protein expression, shLC3 could change its architecture arrangement in HSFs. sibcl-xL showed that Bcl-xL was a key signaling molecule involved in HSFs autophagy. More importantly, both shLC3 and sibcl-xL obviously improved the appearance and architecture of the rabbit ear scar, and reduced scar formation on the rabbit ear. Therefore, the aberration of LC3 protein processing compromised autophagy in HS might associate with its pathogenesis in wound repair. LC3 regulated HS fibrosis by controlling the expression of Bcl-xL in HSFs. Thus, Bcl-xL might serve as a potential molecular target, providing a novel strategy for HS therapy.
format Online
Article
Text
id pubmed-5706833
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-57068332017-12-05 Autophagy protein LC3 regulates the fibrosis of hypertrophic scar by controlling Bcl-xL in dermal fibroblasts Shi, Jihong Shi, Shan Wu, Bin Zhang, Jian Li, Yan Wu, Xue Zhang, Julei Wang, Kejia Zhao, Bin Cai, Weixia Bai, Xiaozhi Hu, Dahai Guan, Hao Oncotarget Research Paper Hypertrophic scar (HS) is a serious skin fibrotic disease characterized by excessive hypercellularity and extracellular matrix (ECM) component deposition. Autophagy is a tightly regulated physiological process essential for cellular maintenance, differentiation, development and homeostasis. However, during the formation of HS, whether and how autophagy is regulated in dermal fibroblasts are still far from elucidated. Here we detected the autophagic capacity in HS and normal skin (NS) counterparts, explored and verified the key regulatory molecules of autophagy in HS-derived fibroblasts (HSFs), and validated the data using rabbit ear scar model. Transmission electron microscopy (TEM) and immunostaining data showed that LC3-positive cells and autophagosomes in HS/HSFs were more intensive relative to those in NS/NSFs groups. Knockdown of LC3 (shLC3) could significantly block the expressionof type I collagen (Col 1, p < 0.01) and type III collagen (Col 3, p < 0.01) and thus inhibit the fibrosis of HSFs. shLC3 resistant to autophagy was shown to be Bcl-xL-, not Bcl-2-dependent, and silencing of Bcl-xL (sibcl-xL) significantly increased apoptosis of HSFs (p < 0.01). Immunofluorescence results showed that instead of inhibiting α-SMA protein expression, shLC3 could change its architecture arrangement in HSFs. sibcl-xL showed that Bcl-xL was a key signaling molecule involved in HSFs autophagy. More importantly, both shLC3 and sibcl-xL obviously improved the appearance and architecture of the rabbit ear scar, and reduced scar formation on the rabbit ear. Therefore, the aberration of LC3 protein processing compromised autophagy in HS might associate with its pathogenesis in wound repair. LC3 regulated HS fibrosis by controlling the expression of Bcl-xL in HSFs. Thus, Bcl-xL might serve as a potential molecular target, providing a novel strategy for HS therapy. Impact Journals LLC 2017-09-08 /pmc/articles/PMC5706833/ /pubmed/29212187 http://dx.doi.org/10.18632/oncotarget.20771 Text en Copyright: © 2017 Shi et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 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
Shi, Jihong
Shi, Shan
Wu, Bin
Zhang, Jian
Li, Yan
Wu, Xue
Zhang, Julei
Wang, Kejia
Zhao, Bin
Cai, Weixia
Bai, Xiaozhi
Hu, Dahai
Guan, Hao
Autophagy protein LC3 regulates the fibrosis of hypertrophic scar by controlling Bcl-xL in dermal fibroblasts
title Autophagy protein LC3 regulates the fibrosis of hypertrophic scar by controlling Bcl-xL in dermal fibroblasts
title_full Autophagy protein LC3 regulates the fibrosis of hypertrophic scar by controlling Bcl-xL in dermal fibroblasts
title_fullStr Autophagy protein LC3 regulates the fibrosis of hypertrophic scar by controlling Bcl-xL in dermal fibroblasts
title_full_unstemmed Autophagy protein LC3 regulates the fibrosis of hypertrophic scar by controlling Bcl-xL in dermal fibroblasts
title_short Autophagy protein LC3 regulates the fibrosis of hypertrophic scar by controlling Bcl-xL in dermal fibroblasts
title_sort autophagy protein lc3 regulates the fibrosis of hypertrophic scar by controlling bcl-xl in dermal fibroblasts
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5706833/
https://www.ncbi.nlm.nih.gov/pubmed/29212187
http://dx.doi.org/10.18632/oncotarget.20771
work_keys_str_mv AT shijihong autophagyproteinlc3regulatesthefibrosisofhypertrophicscarbycontrollingbclxlindermalfibroblasts
AT shishan autophagyproteinlc3regulatesthefibrosisofhypertrophicscarbycontrollingbclxlindermalfibroblasts
AT wubin autophagyproteinlc3regulatesthefibrosisofhypertrophicscarbycontrollingbclxlindermalfibroblasts
AT zhangjian autophagyproteinlc3regulatesthefibrosisofhypertrophicscarbycontrollingbclxlindermalfibroblasts
AT liyan autophagyproteinlc3regulatesthefibrosisofhypertrophicscarbycontrollingbclxlindermalfibroblasts
AT wuxue autophagyproteinlc3regulatesthefibrosisofhypertrophicscarbycontrollingbclxlindermalfibroblasts
AT zhangjulei autophagyproteinlc3regulatesthefibrosisofhypertrophicscarbycontrollingbclxlindermalfibroblasts
AT wangkejia autophagyproteinlc3regulatesthefibrosisofhypertrophicscarbycontrollingbclxlindermalfibroblasts
AT zhaobin autophagyproteinlc3regulatesthefibrosisofhypertrophicscarbycontrollingbclxlindermalfibroblasts
AT caiweixia autophagyproteinlc3regulatesthefibrosisofhypertrophicscarbycontrollingbclxlindermalfibroblasts
AT baixiaozhi autophagyproteinlc3regulatesthefibrosisofhypertrophicscarbycontrollingbclxlindermalfibroblasts
AT hudahai autophagyproteinlc3regulatesthefibrosisofhypertrophicscarbycontrollingbclxlindermalfibroblasts
AT guanhao autophagyproteinlc3regulatesthefibrosisofhypertrophicscarbycontrollingbclxlindermalfibroblasts