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SIRT3-SOD2-mROS-dependent autophagy in cadmium-induced hepatotoxicity and salvage by melatonin

Cadmium is one of the most toxic metal compounds found in the environment. It is well established that Cd induces hepatotoxicity in humans and multiple animal models. Melatonin, a major secretory product of the pineal gland, has been reported to protect against Cd-induced hepatotoxicity. However, th...

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Autores principales: Pi, Huifeng, Xu, Shangcheng, Reiter, Russel J, Guo, Pan, Zhang, Lei, Li, Yuming, Li, Min, Cao, Zhenwang, Tian, Li, Xie, Jia, Zhang, Ruiqi, He, Mindi, Lu, Yonghui, Liu, Chuan, Duan, Weixia, Yu, Zhengping, Zhou, Zhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4590599/
https://www.ncbi.nlm.nih.gov/pubmed/26120888
http://dx.doi.org/10.1080/15548627.2015.1052208
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author Pi, Huifeng
Xu, Shangcheng
Reiter, Russel J
Guo, Pan
Zhang, Lei
Li, Yuming
Li, Min
Cao, Zhenwang
Tian, Li
Xie, Jia
Zhang, Ruiqi
He, Mindi
Lu, Yonghui
Liu, Chuan
Duan, Weixia
Yu, Zhengping
Zhou, Zhou
author_facet Pi, Huifeng
Xu, Shangcheng
Reiter, Russel J
Guo, Pan
Zhang, Lei
Li, Yuming
Li, Min
Cao, Zhenwang
Tian, Li
Xie, Jia
Zhang, Ruiqi
He, Mindi
Lu, Yonghui
Liu, Chuan
Duan, Weixia
Yu, Zhengping
Zhou, Zhou
author_sort Pi, Huifeng
collection PubMed
description Cadmium is one of the most toxic metal compounds found in the environment. It is well established that Cd induces hepatotoxicity in humans and multiple animal models. Melatonin, a major secretory product of the pineal gland, has been reported to protect against Cd-induced hepatotoxicity. However, the mechanism behind this protection remains to be elucidated. We exposed HepG2 cells to different concentrations of cadmium chloride (2.5, 5, and 10 μM) for 12 h. We found that Cd induced mitochondrial-derived superoxide anion-dependent autophagic cell death. Specifically, Cd decreased SIRT3 protein expression and activity and promoted the acetylation of SOD2, superoxide dismutase 2, mitochondrial, thus decreasing its activity, a key enzyme involved in mitochondrial ROS production, although Cd did not disrupt the interaction between SIRT3 and SOD2. These effects were ameliorated by overexpression of SIRT3. However, a catalytic mutant of SIRT3 (SIRT3(H248Y)) lacking deacetylase activity lost the capacity to suppress Cd-induced autophagy. Notably, melatonin treatment enhanced the activity but not the expression of SIRT3, decreased the acetylation of SOD2, inhibited mitochondrial-derived O(2)(•−) production and suppressed the autophagy induced by 10 μM Cd. Moreover, 3-(1H-1,2,3-triazol-4-yl)pyridine, a confirmed selective SIRT3 inhibitor, blocked the melatonin-mediated suppression of autophagy by inhibiting SIRT3-SOD2 signaling. Importantly, melatonin suppressed Cd-induced autophagic cell death by enhancing SIRT3 activity in vivo. These results suggest that melatonin exerts a hepatoprotective effect on mitochondrial-derived O(2)(•−)-stimulated autophagic cell death that is dependent on the SIRT3/SOD2 pathway.
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spelling pubmed-45905992016-02-03 SIRT3-SOD2-mROS-dependent autophagy in cadmium-induced hepatotoxicity and salvage by melatonin Pi, Huifeng Xu, Shangcheng Reiter, Russel J Guo, Pan Zhang, Lei Li, Yuming Li, Min Cao, Zhenwang Tian, Li Xie, Jia Zhang, Ruiqi He, Mindi Lu, Yonghui Liu, Chuan Duan, Weixia Yu, Zhengping Zhou, Zhou Autophagy Basic Research Paper Cadmium is one of the most toxic metal compounds found in the environment. It is well established that Cd induces hepatotoxicity in humans and multiple animal models. Melatonin, a major secretory product of the pineal gland, has been reported to protect against Cd-induced hepatotoxicity. However, the mechanism behind this protection remains to be elucidated. We exposed HepG2 cells to different concentrations of cadmium chloride (2.5, 5, and 10 μM) for 12 h. We found that Cd induced mitochondrial-derived superoxide anion-dependent autophagic cell death. Specifically, Cd decreased SIRT3 protein expression and activity and promoted the acetylation of SOD2, superoxide dismutase 2, mitochondrial, thus decreasing its activity, a key enzyme involved in mitochondrial ROS production, although Cd did not disrupt the interaction between SIRT3 and SOD2. These effects were ameliorated by overexpression of SIRT3. However, a catalytic mutant of SIRT3 (SIRT3(H248Y)) lacking deacetylase activity lost the capacity to suppress Cd-induced autophagy. Notably, melatonin treatment enhanced the activity but not the expression of SIRT3, decreased the acetylation of SOD2, inhibited mitochondrial-derived O(2)(•−) production and suppressed the autophagy induced by 10 μM Cd. Moreover, 3-(1H-1,2,3-triazol-4-yl)pyridine, a confirmed selective SIRT3 inhibitor, blocked the melatonin-mediated suppression of autophagy by inhibiting SIRT3-SOD2 signaling. Importantly, melatonin suppressed Cd-induced autophagic cell death by enhancing SIRT3 activity in vivo. These results suggest that melatonin exerts a hepatoprotective effect on mitochondrial-derived O(2)(•−)-stimulated autophagic cell death that is dependent on the SIRT3/SOD2 pathway. Taylor & Francis 2015-06-29 /pmc/articles/PMC4590599/ /pubmed/26120888 http://dx.doi.org/10.1080/15548627.2015.1052208 Text en © 2015 The Author(s). Published with license by Taylor & Francis Group, LLC http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. The moral rights of the named author(s) have been asserted.
spellingShingle Basic Research Paper
Pi, Huifeng
Xu, Shangcheng
Reiter, Russel J
Guo, Pan
Zhang, Lei
Li, Yuming
Li, Min
Cao, Zhenwang
Tian, Li
Xie, Jia
Zhang, Ruiqi
He, Mindi
Lu, Yonghui
Liu, Chuan
Duan, Weixia
Yu, Zhengping
Zhou, Zhou
SIRT3-SOD2-mROS-dependent autophagy in cadmium-induced hepatotoxicity and salvage by melatonin
title SIRT3-SOD2-mROS-dependent autophagy in cadmium-induced hepatotoxicity and salvage by melatonin
title_full SIRT3-SOD2-mROS-dependent autophagy in cadmium-induced hepatotoxicity and salvage by melatonin
title_fullStr SIRT3-SOD2-mROS-dependent autophagy in cadmium-induced hepatotoxicity and salvage by melatonin
title_full_unstemmed SIRT3-SOD2-mROS-dependent autophagy in cadmium-induced hepatotoxicity and salvage by melatonin
title_short SIRT3-SOD2-mROS-dependent autophagy in cadmium-induced hepatotoxicity and salvage by melatonin
title_sort sirt3-sod2-mros-dependent autophagy in cadmium-induced hepatotoxicity and salvage by melatonin
topic Basic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4590599/
https://www.ncbi.nlm.nih.gov/pubmed/26120888
http://dx.doi.org/10.1080/15548627.2015.1052208
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