Hepatic SIRT3 Upregulation in Response to Chronic Alcohol Consumption Contributes to Alcoholic Liver Disease in Mice

BackgroundAlcoholic liver disease (ALD) is a type of chronic liver disease caused by chronic ethanol overconsumption. The pathogenesis of ALD is complex and there is no effective clinical treatment thus far. SIRT3 is an NAD+-dependent deacetylase primarily located inside mitochondria, and reports on...

Full description

Bibliographic Details
Main Authors: Yue Ma, Hui Chai, Qinchao Ding, Qianyu Qian, Zhaoyuan Yan, Bin Ding, Xiaobing Dou, Songtao Li
Format: Article
Language:English
Published: Frontiers Media S.A. 2019-08-01
Series:Frontiers in Physiology
Subjects:
ALD
Online Access:https://www.frontiersin.org/article/10.3389/fphys.2019.01042/full
id doaj-78ae1b7f390f444b91fa35c90eb0b3fe
record_format Article
spelling doaj-78ae1b7f390f444b91fa35c90eb0b3fe2020-11-24T21:37:58ZengFrontiers Media S.A.Frontiers in Physiology1664-042X2019-08-011010.3389/fphys.2019.01042465829Hepatic SIRT3 Upregulation in Response to Chronic Alcohol Consumption Contributes to Alcoholic Liver Disease in MiceYue Ma0Yue Ma1Hui Chai2Hui Chai3Qinchao Ding4Qianyu Qian5Zhaoyuan Yan6Bin Ding7Bin Ding8Xiaobing Dou9Xiaobing Dou10Songtao Li11Songtao Li12College of Life Sciences, Zhejiang Chinese Medical University, Hangzhou, ChinaLaboratory Animal Center, Zhejiang Academy of Medical Sciences, Hangzhou, ChinaCollege of Life Sciences, Zhejiang Chinese Medical University, Hangzhou, ChinaMolecular Medicine Institute, Zhejiang Chinese Medical University, Hangzhou, ChinaCollege of Life Sciences, Zhejiang Chinese Medical University, Hangzhou, ChinaCollege of Life Sciences, Zhejiang Chinese Medical University, Hangzhou, ChinaCollege of Life Sciences, Zhejiang Chinese Medical University, Hangzhou, ChinaCollege of Life Sciences, Zhejiang Chinese Medical University, Hangzhou, ChinaMolecular Medicine Institute, Zhejiang Chinese Medical University, Hangzhou, ChinaCollege of Life Sciences, Zhejiang Chinese Medical University, Hangzhou, ChinaMolecular Medicine Institute, Zhejiang Chinese Medical University, Hangzhou, ChinaMolecular Medicine Institute, Zhejiang Chinese Medical University, Hangzhou, ChinaCollege of Basic Medicine and Public Health, Zhejiang Chinese Medical University, Hangzhou, ChinaBackgroundAlcoholic liver disease (ALD) is a type of chronic liver disease caused by chronic ethanol overconsumption. The pathogenesis of ALD is complex and there is no effective clinical treatment thus far. SIRT3 is an NAD+-dependent deacetylase primarily located inside mitochondria, and reports on the effect of chronic alcohol exposure on liver SIRT3 expression are scarce. This study aims to investigate the effect of chronic alcohol consumption on hepatic SIRT3 expression and its role in alcoholic-induced liver injury.MethodsUsing the Lieber-DeCarli mouse model of ALD, we analyzed the regulation of SIRT3 and the effect of liver-specific knocking-down of SIRT3 on alcohol-induced liver injury. HepG2 and AML12 hepatocytes were employed to detect the biological function of SIRT3 on alcohol-induced hepatic cytotoxicity and its potential mechanism.ResultsChronic alcohol exposure led to hepatic SIRT3 upregulation and liver-specific SIRT3 knockdown alleviated alcoholic feeding-induced liver injury and lipid accumulation, which is associated with improved autophagy induction. In addition, autophagy induction contributed to the cytoprotective effect of SIRT3 knockdown on ethanol-induced hepatocyte cell death.ConclusionIn summary, our data suggest that hepatic SIRT3 upregulation in response to chronic alcohol exposure and liver-specific SIRT3 knockdown, induced autophagy activation further alleviating alcoholic-induced liver injury, which represents a novel mechanism in this process.https://www.frontiersin.org/article/10.3389/fphys.2019.01042/fullsirtuin 3autophagyliver injuryhepatotoxicityALD
collection DOAJ
language English
format Article
sources DOAJ
author Yue Ma
Yue Ma
Hui Chai
Hui Chai
Qinchao Ding
Qianyu Qian
Zhaoyuan Yan
Bin Ding
Bin Ding
Xiaobing Dou
Xiaobing Dou
Songtao Li
Songtao Li
spellingShingle Yue Ma
Yue Ma
Hui Chai
Hui Chai
Qinchao Ding
Qianyu Qian
Zhaoyuan Yan
Bin Ding
Bin Ding
Xiaobing Dou
Xiaobing Dou
Songtao Li
Songtao Li
Hepatic SIRT3 Upregulation in Response to Chronic Alcohol Consumption Contributes to Alcoholic Liver Disease in Mice
Frontiers in Physiology
sirtuin 3
autophagy
liver injury
hepatotoxicity
ALD
author_facet Yue Ma
Yue Ma
Hui Chai
Hui Chai
Qinchao Ding
Qianyu Qian
Zhaoyuan Yan
Bin Ding
Bin Ding
Xiaobing Dou
Xiaobing Dou
Songtao Li
Songtao Li
author_sort Yue Ma
title Hepatic SIRT3 Upregulation in Response to Chronic Alcohol Consumption Contributes to Alcoholic Liver Disease in Mice
title_short Hepatic SIRT3 Upregulation in Response to Chronic Alcohol Consumption Contributes to Alcoholic Liver Disease in Mice
title_full Hepatic SIRT3 Upregulation in Response to Chronic Alcohol Consumption Contributes to Alcoholic Liver Disease in Mice
title_fullStr Hepatic SIRT3 Upregulation in Response to Chronic Alcohol Consumption Contributes to Alcoholic Liver Disease in Mice
title_full_unstemmed Hepatic SIRT3 Upregulation in Response to Chronic Alcohol Consumption Contributes to Alcoholic Liver Disease in Mice
title_sort hepatic sirt3 upregulation in response to chronic alcohol consumption contributes to alcoholic liver disease in mice
publisher Frontiers Media S.A.
series Frontiers in Physiology
issn 1664-042X
publishDate 2019-08-01
description BackgroundAlcoholic liver disease (ALD) is a type of chronic liver disease caused by chronic ethanol overconsumption. The pathogenesis of ALD is complex and there is no effective clinical treatment thus far. SIRT3 is an NAD+-dependent deacetylase primarily located inside mitochondria, and reports on the effect of chronic alcohol exposure on liver SIRT3 expression are scarce. This study aims to investigate the effect of chronic alcohol consumption on hepatic SIRT3 expression and its role in alcoholic-induced liver injury.MethodsUsing the Lieber-DeCarli mouse model of ALD, we analyzed the regulation of SIRT3 and the effect of liver-specific knocking-down of SIRT3 on alcohol-induced liver injury. HepG2 and AML12 hepatocytes were employed to detect the biological function of SIRT3 on alcohol-induced hepatic cytotoxicity and its potential mechanism.ResultsChronic alcohol exposure led to hepatic SIRT3 upregulation and liver-specific SIRT3 knockdown alleviated alcoholic feeding-induced liver injury and lipid accumulation, which is associated with improved autophagy induction. In addition, autophagy induction contributed to the cytoprotective effect of SIRT3 knockdown on ethanol-induced hepatocyte cell death.ConclusionIn summary, our data suggest that hepatic SIRT3 upregulation in response to chronic alcohol exposure and liver-specific SIRT3 knockdown, induced autophagy activation further alleviating alcoholic-induced liver injury, which represents a novel mechanism in this process.
topic sirtuin 3
autophagy
liver injury
hepatotoxicity
ALD
url https://www.frontiersin.org/article/10.3389/fphys.2019.01042/full
work_keys_str_mv AT yuema hepaticsirt3upregulationinresponsetochronicalcoholconsumptioncontributestoalcoholicliverdiseaseinmice
AT yuema hepaticsirt3upregulationinresponsetochronicalcoholconsumptioncontributestoalcoholicliverdiseaseinmice
AT huichai hepaticsirt3upregulationinresponsetochronicalcoholconsumptioncontributestoalcoholicliverdiseaseinmice
AT huichai hepaticsirt3upregulationinresponsetochronicalcoholconsumptioncontributestoalcoholicliverdiseaseinmice
AT qinchaoding hepaticsirt3upregulationinresponsetochronicalcoholconsumptioncontributestoalcoholicliverdiseaseinmice
AT qianyuqian hepaticsirt3upregulationinresponsetochronicalcoholconsumptioncontributestoalcoholicliverdiseaseinmice
AT zhaoyuanyan hepaticsirt3upregulationinresponsetochronicalcoholconsumptioncontributestoalcoholicliverdiseaseinmice
AT binding hepaticsirt3upregulationinresponsetochronicalcoholconsumptioncontributestoalcoholicliverdiseaseinmice
AT binding hepaticsirt3upregulationinresponsetochronicalcoholconsumptioncontributestoalcoholicliverdiseaseinmice
AT xiaobingdou hepaticsirt3upregulationinresponsetochronicalcoholconsumptioncontributestoalcoholicliverdiseaseinmice
AT xiaobingdou hepaticsirt3upregulationinresponsetochronicalcoholconsumptioncontributestoalcoholicliverdiseaseinmice
AT songtaoli hepaticsirt3upregulationinresponsetochronicalcoholconsumptioncontributestoalcoholicliverdiseaseinmice
AT songtaoli hepaticsirt3upregulationinresponsetochronicalcoholconsumptioncontributestoalcoholicliverdiseaseinmice
_version_ 1725936110447624192