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Resveratrol-Activated AMPK/SIRT1/Autophagy in Cellular Models of Parkinson's Disease

Excessive misfolded proteins and/or dysfunctional mitochondria, which may cause energy deficiency, have been implicated in the etiopathogenesis of Parkinson's disease (PD). Enhanced clearance of misfolded proteins or injured mitochondria via autophagy has been reported to have neuroprotective r...

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Autores principales: Wu, Yuncheng, Li, Xinqun, Zhu, Julie Xiaohong, Xie, Wenjie, Le, Weidong, Fan, Zhen, Jankovic, Joseph, Pan, Tianhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: S. Karger AG 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3699815/
https://www.ncbi.nlm.nih.gov/pubmed/21778691
http://dx.doi.org/10.1159/000328516
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author Wu, Yuncheng
Li, Xinqun
Zhu, Julie Xiaohong
Xie, Wenjie
Le, Weidong
Fan, Zhen
Jankovic, Joseph
Pan, Tianhong
author_facet Wu, Yuncheng
Li, Xinqun
Zhu, Julie Xiaohong
Xie, Wenjie
Le, Weidong
Fan, Zhen
Jankovic, Joseph
Pan, Tianhong
author_sort Wu, Yuncheng
collection PubMed
description Excessive misfolded proteins and/or dysfunctional mitochondria, which may cause energy deficiency, have been implicated in the etiopathogenesis of Parkinson's disease (PD). Enhanced clearance of misfolded proteins or injured mitochondria via autophagy has been reported to have neuroprotective roles in PD models. The fact that resveratrol is a known compound with multiple beneficial effects similar to those associated with energy metabolism led us to explore whether neuroprotective effects of resveratrol are related to its role in autophagy regulation. We tested whether modulation of mammalian silent information regulator 2 (SIRT1) and/or metabolic energy sensor AMP-activated protein kinase (AMPK) are involved in autophagy induction by resveratrol, leading to neuronal survival. Our results showed that resveratrol protected against rotenone-induced apoptosis in SH-SY5Y cells and enhanced degradation of α-synucleins in α-synuclein-expressing PC12 cell lines via autophagy induction. We found that suppression of AMPK and/or SIRT1 caused decrease of protein level of LC3-II, indicating that AMPK and/or SIRT1 are required in resveratrol-mediated autophagy induction. Moreover, suppression of AMPK caused inhibition of SIRT1 activity and attenuated protective effects of resveratrol on rotenone-induced apoptosis, further suggesting that AMPK-SIRT1-autophagy pathway plays an important role in the neuroprotection by resveratrol on PD cellular models.
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spelling pubmed-36998152013-07-11 Resveratrol-Activated AMPK/SIRT1/Autophagy in Cellular Models of Parkinson's Disease Wu, Yuncheng Li, Xinqun Zhu, Julie Xiaohong Xie, Wenjie Le, Weidong Fan, Zhen Jankovic, Joseph Pan, Tianhong Neurosignals Original Paper Excessive misfolded proteins and/or dysfunctional mitochondria, which may cause energy deficiency, have been implicated in the etiopathogenesis of Parkinson's disease (PD). Enhanced clearance of misfolded proteins or injured mitochondria via autophagy has been reported to have neuroprotective roles in PD models. The fact that resveratrol is a known compound with multiple beneficial effects similar to those associated with energy metabolism led us to explore whether neuroprotective effects of resveratrol are related to its role in autophagy regulation. We tested whether modulation of mammalian silent information regulator 2 (SIRT1) and/or metabolic energy sensor AMP-activated protein kinase (AMPK) are involved in autophagy induction by resveratrol, leading to neuronal survival. Our results showed that resveratrol protected against rotenone-induced apoptosis in SH-SY5Y cells and enhanced degradation of α-synucleins in α-synuclein-expressing PC12 cell lines via autophagy induction. We found that suppression of AMPK and/or SIRT1 caused decrease of protein level of LC3-II, indicating that AMPK and/or SIRT1 are required in resveratrol-mediated autophagy induction. Moreover, suppression of AMPK caused inhibition of SIRT1 activity and attenuated protective effects of resveratrol on rotenone-induced apoptosis, further suggesting that AMPK-SIRT1-autophagy pathway plays an important role in the neuroprotection by resveratrol on PD cellular models. S. Karger AG 2011-08 2011-07-22 /pmc/articles/PMC3699815/ /pubmed/21778691 http://dx.doi.org/10.1159/000328516 Text en Copyright © 2011 by S. Karger AG, Basel http://www.karger.com/Authors_Choice This is an open access article distributed under the terms of Karger's Author's Choice™ licensing agreement, adapted from the Creative Commons Attribution Non-Commercial 2.5 license. This license allows authors to re-use their articles for educational and research purposes as long as the author and the journal are fully acknowledged.
spellingShingle Original Paper
Wu, Yuncheng
Li, Xinqun
Zhu, Julie Xiaohong
Xie, Wenjie
Le, Weidong
Fan, Zhen
Jankovic, Joseph
Pan, Tianhong
Resveratrol-Activated AMPK/SIRT1/Autophagy in Cellular Models of Parkinson's Disease
title Resveratrol-Activated AMPK/SIRT1/Autophagy in Cellular Models of Parkinson's Disease
title_full Resveratrol-Activated AMPK/SIRT1/Autophagy in Cellular Models of Parkinson's Disease
title_fullStr Resveratrol-Activated AMPK/SIRT1/Autophagy in Cellular Models of Parkinson's Disease
title_full_unstemmed Resveratrol-Activated AMPK/SIRT1/Autophagy in Cellular Models of Parkinson's Disease
title_short Resveratrol-Activated AMPK/SIRT1/Autophagy in Cellular Models of Parkinson's Disease
title_sort resveratrol-activated ampk/sirt1/autophagy in cellular models of parkinson's disease
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3699815/
https://www.ncbi.nlm.nih.gov/pubmed/21778691
http://dx.doi.org/10.1159/000328516
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