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Autophagy regulates turnover of lipid droplets via ROS-dependent Rab25 activation in hepatic stellate cell

Activation of hepatic stellate cells (HSCs) is a pivotal event in liver fibrosis, characterized by dramatic disappearance of lipid droplets (LDs). Although LD disappearance has long been considered one of the hallmarks of HSC activation, the underlying molecular mechanisms are largely unknown. In th...

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Autores principales: Zhang, Zili, Zhao, Shifeng, Yao, Zhen, Wang, Ling, Shao, Jiangjuan, Chen, Anping, Zhang, Feng, Zheng, Shizhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5199192/
https://www.ncbi.nlm.nih.gov/pubmed/28038427
http://dx.doi.org/10.1016/j.redox.2016.12.021
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author Zhang, Zili
Zhao, Shifeng
Yao, Zhen
Wang, Ling
Shao, Jiangjuan
Chen, Anping
Zhang, Feng
Zheng, Shizhong
author_facet Zhang, Zili
Zhao, Shifeng
Yao, Zhen
Wang, Ling
Shao, Jiangjuan
Chen, Anping
Zhang, Feng
Zheng, Shizhong
author_sort Zhang, Zili
collection PubMed
description Activation of hepatic stellate cells (HSCs) is a pivotal event in liver fibrosis, characterized by dramatic disappearance of lipid droplets (LDs). Although LD disappearance has long been considered one of the hallmarks of HSC activation, the underlying molecular mechanisms are largely unknown. In this study, we sought to investigate the role of autophagy in the process of LD disappearance, and to further examine the underlying mechanisms in this molecular context. We found that LD disappearance during HSC activation was associated with a coordinate increase in autophagy. Inhibition or depletion of autophagy by Atg5 siRNA impaired LD disappearance of quiescent HSCs, and also restored lipocyte phenotype of activated HSCs. In contrast, induction of autophagy by Atg5 plasmid accelerated LD loss of quiescent HSCs. Importantly, our study also identified a crucial role for reactive oxygen species (ROS) in the facilitation of autophagy activation. Antioxidants, such as glutathione and N-acetyl cysteine, significantly abrogated ROS production, and in turn, prevented autophagosome generation and autophagic flux during HSC activation. Besides, we found that HSC activation triggered Rab25 overexpression, and promoted the combination of Rab25 and PI3KCIII, which direct autophagy to recognize, wrap and degrade LDs. Down-regulation of Rab25 activity, using Rab25 siRNA, blocked the target recognition of autophagy on LDs, and inhibited LD disappearance of quiescent HSCs. Moreover, the scavenging of excessive ROS could disrupt the interaction between autophagy and Rab25, and increase intracellular lipid content. Overall, these results provide novel implications to reveal the molecular mechanism of LD disappearance during HSC activation, and also identify ROS-Rab25-dependent autophagy as a potential target for the treatment of liver fibrosis.
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spelling pubmed-51991922017-01-06 Autophagy regulates turnover of lipid droplets via ROS-dependent Rab25 activation in hepatic stellate cell Zhang, Zili Zhao, Shifeng Yao, Zhen Wang, Ling Shao, Jiangjuan Chen, Anping Zhang, Feng Zheng, Shizhong Redox Biol Research Paper Activation of hepatic stellate cells (HSCs) is a pivotal event in liver fibrosis, characterized by dramatic disappearance of lipid droplets (LDs). Although LD disappearance has long been considered one of the hallmarks of HSC activation, the underlying molecular mechanisms are largely unknown. In this study, we sought to investigate the role of autophagy in the process of LD disappearance, and to further examine the underlying mechanisms in this molecular context. We found that LD disappearance during HSC activation was associated with a coordinate increase in autophagy. Inhibition or depletion of autophagy by Atg5 siRNA impaired LD disappearance of quiescent HSCs, and also restored lipocyte phenotype of activated HSCs. In contrast, induction of autophagy by Atg5 plasmid accelerated LD loss of quiescent HSCs. Importantly, our study also identified a crucial role for reactive oxygen species (ROS) in the facilitation of autophagy activation. Antioxidants, such as glutathione and N-acetyl cysteine, significantly abrogated ROS production, and in turn, prevented autophagosome generation and autophagic flux during HSC activation. Besides, we found that HSC activation triggered Rab25 overexpression, and promoted the combination of Rab25 and PI3KCIII, which direct autophagy to recognize, wrap and degrade LDs. Down-regulation of Rab25 activity, using Rab25 siRNA, blocked the target recognition of autophagy on LDs, and inhibited LD disappearance of quiescent HSCs. Moreover, the scavenging of excessive ROS could disrupt the interaction between autophagy and Rab25, and increase intracellular lipid content. Overall, these results provide novel implications to reveal the molecular mechanism of LD disappearance during HSC activation, and also identify ROS-Rab25-dependent autophagy as a potential target for the treatment of liver fibrosis. Elsevier 2016-12-21 /pmc/articles/PMC5199192/ /pubmed/28038427 http://dx.doi.org/10.1016/j.redox.2016.12.021 Text en © 2016 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Zhang, Zili
Zhao, Shifeng
Yao, Zhen
Wang, Ling
Shao, Jiangjuan
Chen, Anping
Zhang, Feng
Zheng, Shizhong
Autophagy regulates turnover of lipid droplets via ROS-dependent Rab25 activation in hepatic stellate cell
title Autophagy regulates turnover of lipid droplets via ROS-dependent Rab25 activation in hepatic stellate cell
title_full Autophagy regulates turnover of lipid droplets via ROS-dependent Rab25 activation in hepatic stellate cell
title_fullStr Autophagy regulates turnover of lipid droplets via ROS-dependent Rab25 activation in hepatic stellate cell
title_full_unstemmed Autophagy regulates turnover of lipid droplets via ROS-dependent Rab25 activation in hepatic stellate cell
title_short Autophagy regulates turnover of lipid droplets via ROS-dependent Rab25 activation in hepatic stellate cell
title_sort autophagy regulates turnover of lipid droplets via ros-dependent rab25 activation in hepatic stellate cell
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5199192/
https://www.ncbi.nlm.nih.gov/pubmed/28038427
http://dx.doi.org/10.1016/j.redox.2016.12.021
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