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Insulin-Like Growth Factor I Prevents Cellular Aging via Activation of Mitophagy

Mitochondrial dysfunction is a hallmark of cellular aging. Mitophagy is a critical mitochondrial quality control mechanism that removes dysfunctional mitochondria and contributes to cell survival. Insulin-like growth factor 1 (IGF-1) promotes survival of smooth muscle cells (SMCs), but its potential...

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Autores principales: Hou, Xuwei, Li, Zhaohui, Higashi, Yusuke, Delafontaine, Patrice, Sukhanov, Sergiy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7416301/
https://www.ncbi.nlm.nih.gov/pubmed/32802505
http://dx.doi.org/10.1155/2020/4939310
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author Hou, Xuwei
Li, Zhaohui
Higashi, Yusuke
Delafontaine, Patrice
Sukhanov, Sergiy
author_facet Hou, Xuwei
Li, Zhaohui
Higashi, Yusuke
Delafontaine, Patrice
Sukhanov, Sergiy
author_sort Hou, Xuwei
collection PubMed
description Mitochondrial dysfunction is a hallmark of cellular aging. Mitophagy is a critical mitochondrial quality control mechanism that removes dysfunctional mitochondria and contributes to cell survival. Insulin-like growth factor 1 (IGF-1) promotes survival of smooth muscle cells (SMCs), but its potential effect on cellular aging is unknown yet. We found that IGF-1 decreased cell senescence, prevented DNA telomere shortening, increased mitochondrial membrane potential, activated cytochrome C oxidase, and reduced mitochondrial DNA damage in long-term cultured (aged) aortic SMC, suggesting an antiaging effect. IGF-1 increased mitophagy in aged cells, and this was associated with decreased expression of cyclin-dependent kinase inhibitors p16 and p21 and elevated levels of Nrf2 and Sirt3, regulators of mitophagy and mitochondrial biogenesis. SiRNA-induced inhibition of either Nrf2 or Sirt3 blocked IGF-1-induced upregulation of mitophagy, suggesting that the Nrf2/Sirt3 pathway was required for IGF-1's effect on mitophagy. PINK1 is a master regulator of mitophagy. PINK1 silencing suppressed mitophagy and inhibited IGF-1-induced antiaging effects in aged SMC, consistent with an essential role of mitophagy in IGF-1's effect on cellular aging. Thus, IGF-1 inhibited cellular aging via Nrf2/Sirt3-dependent activation of mitophagy. Our data suggest that activation of IGF-1 signaling is a novel potential strategy to activate mitophagy and slow cellular aging.
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spelling pubmed-74163012020-08-14 Insulin-Like Growth Factor I Prevents Cellular Aging via Activation of Mitophagy Hou, Xuwei Li, Zhaohui Higashi, Yusuke Delafontaine, Patrice Sukhanov, Sergiy J Aging Res Research Article Mitochondrial dysfunction is a hallmark of cellular aging. Mitophagy is a critical mitochondrial quality control mechanism that removes dysfunctional mitochondria and contributes to cell survival. Insulin-like growth factor 1 (IGF-1) promotes survival of smooth muscle cells (SMCs), but its potential effect on cellular aging is unknown yet. We found that IGF-1 decreased cell senescence, prevented DNA telomere shortening, increased mitochondrial membrane potential, activated cytochrome C oxidase, and reduced mitochondrial DNA damage in long-term cultured (aged) aortic SMC, suggesting an antiaging effect. IGF-1 increased mitophagy in aged cells, and this was associated with decreased expression of cyclin-dependent kinase inhibitors p16 and p21 and elevated levels of Nrf2 and Sirt3, regulators of mitophagy and mitochondrial biogenesis. SiRNA-induced inhibition of either Nrf2 or Sirt3 blocked IGF-1-induced upregulation of mitophagy, suggesting that the Nrf2/Sirt3 pathway was required for IGF-1's effect on mitophagy. PINK1 is a master regulator of mitophagy. PINK1 silencing suppressed mitophagy and inhibited IGF-1-induced antiaging effects in aged SMC, consistent with an essential role of mitophagy in IGF-1's effect on cellular aging. Thus, IGF-1 inhibited cellular aging via Nrf2/Sirt3-dependent activation of mitophagy. Our data suggest that activation of IGF-1 signaling is a novel potential strategy to activate mitophagy and slow cellular aging. Hindawi 2020-08-01 /pmc/articles/PMC7416301/ /pubmed/32802505 http://dx.doi.org/10.1155/2020/4939310 Text en Copyright © 2020 Xuwei Hou et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Hou, Xuwei
Li, Zhaohui
Higashi, Yusuke
Delafontaine, Patrice
Sukhanov, Sergiy
Insulin-Like Growth Factor I Prevents Cellular Aging via Activation of Mitophagy
title Insulin-Like Growth Factor I Prevents Cellular Aging via Activation of Mitophagy
title_full Insulin-Like Growth Factor I Prevents Cellular Aging via Activation of Mitophagy
title_fullStr Insulin-Like Growth Factor I Prevents Cellular Aging via Activation of Mitophagy
title_full_unstemmed Insulin-Like Growth Factor I Prevents Cellular Aging via Activation of Mitophagy
title_short Insulin-Like Growth Factor I Prevents Cellular Aging via Activation of Mitophagy
title_sort insulin-like growth factor i prevents cellular aging via activation of mitophagy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7416301/
https://www.ncbi.nlm.nih.gov/pubmed/32802505
http://dx.doi.org/10.1155/2020/4939310
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