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Crosstalk between Ca(2+) signaling and mitochondrial H(2)O(2) is required for rotenone inhibition of mTOR signaling pathway leading to neuronal apoptosis

Rotenone, a neurotoxic pesticide, induces loss of dopaminergic neurons related to Parkinson's disease. Previous studies have shown that rotenone induces neuronal apoptosis partly by triggering hydrogen peroxide (H(2)O(2))-dependent suppression of mTOR pathway. However, the underlying mechanism...

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Autores principales: Liu, Chunxiao, Ye, Yangjing, Zhou, Qian, Zhang, Ruijie, Zhang, Hai, Liu, Wen, Xu, Chong, Liu, Lei, Huang, Shile, Chen, Long
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4884936/
https://www.ncbi.nlm.nih.gov/pubmed/26859572
http://dx.doi.org/10.18632/oncotarget.7183
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author Liu, Chunxiao
Ye, Yangjing
Zhou, Qian
Zhang, Ruijie
Zhang, Hai
Liu, Wen
Xu, Chong
Liu, Lei
Huang, Shile
Chen, Long
author_facet Liu, Chunxiao
Ye, Yangjing
Zhou, Qian
Zhang, Ruijie
Zhang, Hai
Liu, Wen
Xu, Chong
Liu, Lei
Huang, Shile
Chen, Long
author_sort Liu, Chunxiao
collection PubMed
description Rotenone, a neurotoxic pesticide, induces loss of dopaminergic neurons related to Parkinson's disease. Previous studies have shown that rotenone induces neuronal apoptosis partly by triggering hydrogen peroxide (H(2)O(2))-dependent suppression of mTOR pathway. However, the underlying mechanism is not fully understood. Here, we show that rotenone elevates intracellular free calcium ion ([Ca(2+)](i)) level, and activates CaMKII, resulting in inhibition of mTOR signaling and induction of neuronal apoptosis. Chelating [Ca(2+)](i) with BAPTA/AM, preventing extracellular Ca(2+) influx using EGTA, inhibiting CaMKII with KN93, or silencing CaMKII significantly attenuated rotenone-induced H(2)O(2) production, mTOR inhibition, and cell death. Interestingly, using TTFA, antimycin A, catalase or Mito-TEMPO, we found that rotenone-induced mitochondrial H(2)O(2) also in turn elevated [Ca(2+)](i) level, thereby stimulating CaMKII, leading to inhibition of mTOR pathway and induction of neuronal apoptosis. Expression of wild type mTOR or constitutively active S6K1, or silencing 4E-BP1 strengthened the inhibitory effects of catalase, Mito-TEMPO, BAPTA/AM or EGTA on rotenone-induced [Ca(2+)](i) elevation, CaMKII phosphorylation and neuronal apoptosis. Together, the results indicate that the crosstalk between Ca(2+) signaling and mitochondrial H(2)O(2) is required for rotenone inhibition of mTOR-mediated S6K1 and 4E-BP1 pathways. Our findings suggest that how to control over-elevation of intracellular Ca(2+) and overproduction of mitochondrial H(2)O(2) may be a new approach to deal with the neurotoxicity of rotenone.
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spelling pubmed-48849362016-06-17 Crosstalk between Ca(2+) signaling and mitochondrial H(2)O(2) is required for rotenone inhibition of mTOR signaling pathway leading to neuronal apoptosis Liu, Chunxiao Ye, Yangjing Zhou, Qian Zhang, Ruijie Zhang, Hai Liu, Wen Xu, Chong Liu, Lei Huang, Shile Chen, Long Oncotarget Research Paper: Pathology Rotenone, a neurotoxic pesticide, induces loss of dopaminergic neurons related to Parkinson's disease. Previous studies have shown that rotenone induces neuronal apoptosis partly by triggering hydrogen peroxide (H(2)O(2))-dependent suppression of mTOR pathway. However, the underlying mechanism is not fully understood. Here, we show that rotenone elevates intracellular free calcium ion ([Ca(2+)](i)) level, and activates CaMKII, resulting in inhibition of mTOR signaling and induction of neuronal apoptosis. Chelating [Ca(2+)](i) with BAPTA/AM, preventing extracellular Ca(2+) influx using EGTA, inhibiting CaMKII with KN93, or silencing CaMKII significantly attenuated rotenone-induced H(2)O(2) production, mTOR inhibition, and cell death. Interestingly, using TTFA, antimycin A, catalase or Mito-TEMPO, we found that rotenone-induced mitochondrial H(2)O(2) also in turn elevated [Ca(2+)](i) level, thereby stimulating CaMKII, leading to inhibition of mTOR pathway and induction of neuronal apoptosis. Expression of wild type mTOR or constitutively active S6K1, or silencing 4E-BP1 strengthened the inhibitory effects of catalase, Mito-TEMPO, BAPTA/AM or EGTA on rotenone-induced [Ca(2+)](i) elevation, CaMKII phosphorylation and neuronal apoptosis. Together, the results indicate that the crosstalk between Ca(2+) signaling and mitochondrial H(2)O(2) is required for rotenone inhibition of mTOR-mediated S6K1 and 4E-BP1 pathways. Our findings suggest that how to control over-elevation of intracellular Ca(2+) and overproduction of mitochondrial H(2)O(2) may be a new approach to deal with the neurotoxicity of rotenone. Impact Journals LLC 2016-02-03 /pmc/articles/PMC4884936/ /pubmed/26859572 http://dx.doi.org/10.18632/oncotarget.7183 Text en Copyright: © 2016 Liu et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper: Pathology
Liu, Chunxiao
Ye, Yangjing
Zhou, Qian
Zhang, Ruijie
Zhang, Hai
Liu, Wen
Xu, Chong
Liu, Lei
Huang, Shile
Chen, Long
Crosstalk between Ca(2+) signaling and mitochondrial H(2)O(2) is required for rotenone inhibition of mTOR signaling pathway leading to neuronal apoptosis
title Crosstalk between Ca(2+) signaling and mitochondrial H(2)O(2) is required for rotenone inhibition of mTOR signaling pathway leading to neuronal apoptosis
title_full Crosstalk between Ca(2+) signaling and mitochondrial H(2)O(2) is required for rotenone inhibition of mTOR signaling pathway leading to neuronal apoptosis
title_fullStr Crosstalk between Ca(2+) signaling and mitochondrial H(2)O(2) is required for rotenone inhibition of mTOR signaling pathway leading to neuronal apoptosis
title_full_unstemmed Crosstalk between Ca(2+) signaling and mitochondrial H(2)O(2) is required for rotenone inhibition of mTOR signaling pathway leading to neuronal apoptosis
title_short Crosstalk between Ca(2+) signaling and mitochondrial H(2)O(2) is required for rotenone inhibition of mTOR signaling pathway leading to neuronal apoptosis
title_sort crosstalk between ca(2+) signaling and mitochondrial h(2)o(2) is required for rotenone inhibition of mtor signaling pathway leading to neuronal apoptosis
topic Research Paper: Pathology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4884936/
https://www.ncbi.nlm.nih.gov/pubmed/26859572
http://dx.doi.org/10.18632/oncotarget.7183
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