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Melatonin Improves Mitochondrial Function by Promoting MT1/SIRT1/PGC-1 Alpha-Dependent Mitochondrial Biogenesis in Cadmium-Induced Hepatotoxicity In Vitro

Melatonin is an indolamine synthesized in the pineal gland that has a wide range of physiological functions, and it has been under clinical investigation for expanded applications. Increasing evidence demonstrates that melatonin can ameliorate cadmium-induced hepatotoxicity. However, the potentially...

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Autores principales: Guo, Pan, Pi, Huifeng, Xu, Shangcheng, Zhang, Lei, Li, Yuming, Li, Min, Cao, Zhengwang, Tian, Li, Xie, Jia, Li, Renyan, He, Mindi, Lu, Yonghui, Liu, Chuan, Duan, Weixia, Yu, Zhengping, Zhou, Zhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
118
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4226765/
https://www.ncbi.nlm.nih.gov/pubmed/25159133
http://dx.doi.org/10.1093/toxsci/kfu164
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author Guo, Pan
Pi, Huifeng
Xu, Shangcheng
Zhang, Lei
Li, Yuming
Li, Min
Cao, Zhengwang
Tian, Li
Xie, Jia
Li, Renyan
He, Mindi
Lu, Yonghui
Liu, Chuan
Duan, Weixia
Yu, Zhengping
Zhou, Zhou
author_facet Guo, Pan
Pi, Huifeng
Xu, Shangcheng
Zhang, Lei
Li, Yuming
Li, Min
Cao, Zhengwang
Tian, Li
Xie, Jia
Li, Renyan
He, Mindi
Lu, Yonghui
Liu, Chuan
Duan, Weixia
Yu, Zhengping
Zhou, Zhou
author_sort Guo, Pan
collection PubMed
description Melatonin is an indolamine synthesized in the pineal gland that has a wide range of physiological functions, and it has been under clinical investigation for expanded applications. Increasing evidence demonstrates that melatonin can ameliorate cadmium-induced hepatotoxicity. However, the potentially protective effects of melatonin against cadmium-induced hepatotoxicity and the underlying mechanisms of this protection remain unclear. This study investigates the protective effects of melatonin pretreatment on cadmium-induced hepatotoxicity and elucidates the potential mechanism of melatonin-mediated protection. We exposed HepG2 cells to different concentrations of cadmium chloride (2.5, 5, and 10μM) for 12 h. We found that Cd stimulated cytotoxicity, disrupted the mitochondrial membrane potential, increased reactive oxygen species production, and decreased mitochondrial mass and mitochondrial DNA content. Consistent with this finding, Cd exposure was associated with decreased Sirtuin 1 (SIRT1) protein expression and activity, thus promoted acetylation of PGC-1 alpha, a key enzyme involved in mitochondrial biogenesis and function, although Cd did not disrupt the interaction between SIRT1 and PGC-1 alpha. However, all cadmium-induced mitochondrial oxidative injuries were efficiently attenuated by melatonin pretreatment. Moreover, Sirtinol and SIRT1 siRNA each blocked the melatonin-mediated elevation in mitochondrial function by inhibiting SIRT1/ PGC-1 alpha signaling. Luzindole, a melatonin receptor antagonist, was found to partially block the ability of melatonin to promote SIRT1/ PGC-1 alpha signaling. In summary, our results indicate that SIRT1 plays an essential role in the ability of moderate melatonin to stimulate PGC-1 alpha and improve mitochondrial biogenesis and function at least partially through melatonin receptors in cadmium-induced hepatotoxicity.
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spelling pubmed-42267652014-11-12 Melatonin Improves Mitochondrial Function by Promoting MT1/SIRT1/PGC-1 Alpha-Dependent Mitochondrial Biogenesis in Cadmium-Induced Hepatotoxicity In Vitro Guo, Pan Pi, Huifeng Xu, Shangcheng Zhang, Lei Li, Yuming Li, Min Cao, Zhengwang Tian, Li Xie, Jia Li, Renyan He, Mindi Lu, Yonghui Liu, Chuan Duan, Weixia Yu, Zhengping Zhou, Zhou Toxicol Sci 118 Melatonin is an indolamine synthesized in the pineal gland that has a wide range of physiological functions, and it has been under clinical investigation for expanded applications. Increasing evidence demonstrates that melatonin can ameliorate cadmium-induced hepatotoxicity. However, the potentially protective effects of melatonin against cadmium-induced hepatotoxicity and the underlying mechanisms of this protection remain unclear. This study investigates the protective effects of melatonin pretreatment on cadmium-induced hepatotoxicity and elucidates the potential mechanism of melatonin-mediated protection. We exposed HepG2 cells to different concentrations of cadmium chloride (2.5, 5, and 10μM) for 12 h. We found that Cd stimulated cytotoxicity, disrupted the mitochondrial membrane potential, increased reactive oxygen species production, and decreased mitochondrial mass and mitochondrial DNA content. Consistent with this finding, Cd exposure was associated with decreased Sirtuin 1 (SIRT1) protein expression and activity, thus promoted acetylation of PGC-1 alpha, a key enzyme involved in mitochondrial biogenesis and function, although Cd did not disrupt the interaction between SIRT1 and PGC-1 alpha. However, all cadmium-induced mitochondrial oxidative injuries were efficiently attenuated by melatonin pretreatment. Moreover, Sirtinol and SIRT1 siRNA each blocked the melatonin-mediated elevation in mitochondrial function by inhibiting SIRT1/ PGC-1 alpha signaling. Luzindole, a melatonin receptor antagonist, was found to partially block the ability of melatonin to promote SIRT1/ PGC-1 alpha signaling. In summary, our results indicate that SIRT1 plays an essential role in the ability of moderate melatonin to stimulate PGC-1 alpha and improve mitochondrial biogenesis and function at least partially through melatonin receptors in cadmium-induced hepatotoxicity. Oxford University Press 2014-08-26 2014-11-01 /pmc/articles/PMC4226765/ /pubmed/25159133 http://dx.doi.org/10.1093/toxsci/kfu164 Text en © Published by Oxford University Press on behalf of Toxicological Sciences. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs licence (http://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial reproduction and distribution of the work, in any medium, provided the original work is not altered or transformed in any way, and that the work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle 118
Guo, Pan
Pi, Huifeng
Xu, Shangcheng
Zhang, Lei
Li, Yuming
Li, Min
Cao, Zhengwang
Tian, Li
Xie, Jia
Li, Renyan
He, Mindi
Lu, Yonghui
Liu, Chuan
Duan, Weixia
Yu, Zhengping
Zhou, Zhou
Melatonin Improves Mitochondrial Function by Promoting MT1/SIRT1/PGC-1 Alpha-Dependent Mitochondrial Biogenesis in Cadmium-Induced Hepatotoxicity In Vitro
title Melatonin Improves Mitochondrial Function by Promoting MT1/SIRT1/PGC-1 Alpha-Dependent Mitochondrial Biogenesis in Cadmium-Induced Hepatotoxicity In Vitro
title_full Melatonin Improves Mitochondrial Function by Promoting MT1/SIRT1/PGC-1 Alpha-Dependent Mitochondrial Biogenesis in Cadmium-Induced Hepatotoxicity In Vitro
title_fullStr Melatonin Improves Mitochondrial Function by Promoting MT1/SIRT1/PGC-1 Alpha-Dependent Mitochondrial Biogenesis in Cadmium-Induced Hepatotoxicity In Vitro
title_full_unstemmed Melatonin Improves Mitochondrial Function by Promoting MT1/SIRT1/PGC-1 Alpha-Dependent Mitochondrial Biogenesis in Cadmium-Induced Hepatotoxicity In Vitro
title_short Melatonin Improves Mitochondrial Function by Promoting MT1/SIRT1/PGC-1 Alpha-Dependent Mitochondrial Biogenesis in Cadmium-Induced Hepatotoxicity In Vitro
title_sort melatonin improves mitochondrial function by promoting mt1/sirt1/pgc-1 alpha-dependent mitochondrial biogenesis in cadmium-induced hepatotoxicity in vitro
topic 118
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4226765/
https://www.ncbi.nlm.nih.gov/pubmed/25159133
http://dx.doi.org/10.1093/toxsci/kfu164
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