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Lifespan regulation in α/β posterior neurons of the fly mushroom bodies by Rab27

Brain function has been implicated to control the aging process and modulate lifespan. However, continuous efforts remain for the identification of the minimal sufficient brain region and the underlying mechanism for neuronal regulation of longevity. Here, we show that the Drosophila lifespan is mod...

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Autores principales: Lien, Wen‐Yu, Chen, Yu‐Ting, Li, Yi‐Jhan, Wu, Jie‐Kai, Huang, Kuan‐Lin, Lin, Jian‐Rong, Lin, Shih‐Ching, Hou, Chia‐Chun, Wang, Horng‐Dar, Wu, Chia‐Lin, Huang, Shu‐Yi, Chan, Chih‐Chiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7431830/
https://www.ncbi.nlm.nih.gov/pubmed/32627932
http://dx.doi.org/10.1111/acel.13179
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author Lien, Wen‐Yu
Chen, Yu‐Ting
Li, Yi‐Jhan
Wu, Jie‐Kai
Huang, Kuan‐Lin
Lin, Jian‐Rong
Lin, Shih‐Ching
Hou, Chia‐Chun
Wang, Horng‐Dar
Wu, Chia‐Lin
Huang, Shu‐Yi
Chan, Chih‐Chiang
author_facet Lien, Wen‐Yu
Chen, Yu‐Ting
Li, Yi‐Jhan
Wu, Jie‐Kai
Huang, Kuan‐Lin
Lin, Jian‐Rong
Lin, Shih‐Ching
Hou, Chia‐Chun
Wang, Horng‐Dar
Wu, Chia‐Lin
Huang, Shu‐Yi
Chan, Chih‐Chiang
author_sort Lien, Wen‐Yu
collection PubMed
description Brain function has been implicated to control the aging process and modulate lifespan. However, continuous efforts remain for the identification of the minimal sufficient brain region and the underlying mechanism for neuronal regulation of longevity. Here, we show that the Drosophila lifespan is modulated by rab27 functioning in a small subset of neurons of the mushroom bodies (MB), a brain structure that shares analogous functions with mammalian hippocampus and hypothalamus. Depleting rab27 in the α/βp neurons of the MB is sufficient to extend lifespan, enhance systemic stress responses, and alter energy homeostasis, all without trade‐offs in major life functions. Within the α/βp neurons, rab27KO causes the mislocalization of phosphorylated S6K thus attenuates TOR signaling, resulting in decreased protein synthesis and reduced neuronal activity. Consistently, expression of dominant‐negative S6K in the α/βp neurons increases lifespan. Furthermore, the expression of phospho‐mimetic S6 in α/βp neurons of rab27KO rescued local protein synthesis and reversed lifespan extension. These findings demonstrate that inhibiting TOR‐mediated protein synthesis in α/βp neurons is sufficient to promote longevity.
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spelling pubmed-74318302020-08-20 Lifespan regulation in α/β posterior neurons of the fly mushroom bodies by Rab27 Lien, Wen‐Yu Chen, Yu‐Ting Li, Yi‐Jhan Wu, Jie‐Kai Huang, Kuan‐Lin Lin, Jian‐Rong Lin, Shih‐Ching Hou, Chia‐Chun Wang, Horng‐Dar Wu, Chia‐Lin Huang, Shu‐Yi Chan, Chih‐Chiang Aging Cell Original Articles Brain function has been implicated to control the aging process and modulate lifespan. However, continuous efforts remain for the identification of the minimal sufficient brain region and the underlying mechanism for neuronal regulation of longevity. Here, we show that the Drosophila lifespan is modulated by rab27 functioning in a small subset of neurons of the mushroom bodies (MB), a brain structure that shares analogous functions with mammalian hippocampus and hypothalamus. Depleting rab27 in the α/βp neurons of the MB is sufficient to extend lifespan, enhance systemic stress responses, and alter energy homeostasis, all without trade‐offs in major life functions. Within the α/βp neurons, rab27KO causes the mislocalization of phosphorylated S6K thus attenuates TOR signaling, resulting in decreased protein synthesis and reduced neuronal activity. Consistently, expression of dominant‐negative S6K in the α/βp neurons increases lifespan. Furthermore, the expression of phospho‐mimetic S6 in α/βp neurons of rab27KO rescued local protein synthesis and reversed lifespan extension. These findings demonstrate that inhibiting TOR‐mediated protein synthesis in α/βp neurons is sufficient to promote longevity. John Wiley and Sons Inc. 2020-07-06 2020-08 /pmc/articles/PMC7431830/ /pubmed/32627932 http://dx.doi.org/10.1111/acel.13179 Text en © 2020 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Lien, Wen‐Yu
Chen, Yu‐Ting
Li, Yi‐Jhan
Wu, Jie‐Kai
Huang, Kuan‐Lin
Lin, Jian‐Rong
Lin, Shih‐Ching
Hou, Chia‐Chun
Wang, Horng‐Dar
Wu, Chia‐Lin
Huang, Shu‐Yi
Chan, Chih‐Chiang
Lifespan regulation in α/β posterior neurons of the fly mushroom bodies by Rab27
title Lifespan regulation in α/β posterior neurons of the fly mushroom bodies by Rab27
title_full Lifespan regulation in α/β posterior neurons of the fly mushroom bodies by Rab27
title_fullStr Lifespan regulation in α/β posterior neurons of the fly mushroom bodies by Rab27
title_full_unstemmed Lifespan regulation in α/β posterior neurons of the fly mushroom bodies by Rab27
title_short Lifespan regulation in α/β posterior neurons of the fly mushroom bodies by Rab27
title_sort lifespan regulation in α/β posterior neurons of the fly mushroom bodies by rab27
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7431830/
https://www.ncbi.nlm.nih.gov/pubmed/32627932
http://dx.doi.org/10.1111/acel.13179
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