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A proteomic atlas of insulin signalling reveals tissue‐specific mechanisms of longevity assurance

Lowered activity of the insulin/IGF signalling (IIS) network can ameliorate the effects of ageing in laboratory animals and, possibly, humans. Although transcriptome remodelling in long‐lived IIS mutants has been extensively documented, the causal mechanisms contributing to extended lifespan, partic...

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Autores principales: Tain, Luke S, Sehlke, Robert, Jain, Chirag, Chokkalingam, Manopriya, Nagaraj, Nagarjuna, Essers, Paul, Rassner, Mark, Grönke, Sebastian, Froelich, Jenny, Dieterich, Christoph, Mann, Matthias, Alic, Nazif, Beyer, Andreas, Partridge, Linda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5615923/
https://www.ncbi.nlm.nih.gov/pubmed/28916541
http://dx.doi.org/10.15252/msb.20177663
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author Tain, Luke S
Sehlke, Robert
Jain, Chirag
Chokkalingam, Manopriya
Nagaraj, Nagarjuna
Essers, Paul
Rassner, Mark
Grönke, Sebastian
Froelich, Jenny
Dieterich, Christoph
Mann, Matthias
Alic, Nazif
Beyer, Andreas
Partridge, Linda
author_facet Tain, Luke S
Sehlke, Robert
Jain, Chirag
Chokkalingam, Manopriya
Nagaraj, Nagarjuna
Essers, Paul
Rassner, Mark
Grönke, Sebastian
Froelich, Jenny
Dieterich, Christoph
Mann, Matthias
Alic, Nazif
Beyer, Andreas
Partridge, Linda
author_sort Tain, Luke S
collection PubMed
description Lowered activity of the insulin/IGF signalling (IIS) network can ameliorate the effects of ageing in laboratory animals and, possibly, humans. Although transcriptome remodelling in long‐lived IIS mutants has been extensively documented, the causal mechanisms contributing to extended lifespan, particularly in specific tissues, remain unclear. We have characterized the proteomes of four key insulin‐sensitive tissues in a long‐lived Drosophila IIS mutant and control, and detected 44% of the predicted proteome (6,085 proteins). Expression of ribosome‐associated proteins in the fat body was reduced in the mutant, with a corresponding, tissue‐specific reduction in translation. Expression of mitochondrial electron transport chain proteins in fat body was increased, leading to increased respiration, which was necessary for IIS‐mediated lifespan extension, and alone sufficient to mediate it. Proteasomal subunits showed altered expression in IIS mutant gut, and gut‐specific over‐expression of the RPN6 proteasomal subunit, was sufficient to increase proteasomal activity and extend lifespan, whilst inhibition of proteasome activity abolished IIS‐mediated longevity. Our study thus uncovered strikingly tissue‐specific responses of cellular processes to lowered IIS acting in concert to ameliorate ageing.
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spelling pubmed-56159232017-09-28 A proteomic atlas of insulin signalling reveals tissue‐specific mechanisms of longevity assurance Tain, Luke S Sehlke, Robert Jain, Chirag Chokkalingam, Manopriya Nagaraj, Nagarjuna Essers, Paul Rassner, Mark Grönke, Sebastian Froelich, Jenny Dieterich, Christoph Mann, Matthias Alic, Nazif Beyer, Andreas Partridge, Linda Mol Syst Biol Articles Lowered activity of the insulin/IGF signalling (IIS) network can ameliorate the effects of ageing in laboratory animals and, possibly, humans. Although transcriptome remodelling in long‐lived IIS mutants has been extensively documented, the causal mechanisms contributing to extended lifespan, particularly in specific tissues, remain unclear. We have characterized the proteomes of four key insulin‐sensitive tissues in a long‐lived Drosophila IIS mutant and control, and detected 44% of the predicted proteome (6,085 proteins). Expression of ribosome‐associated proteins in the fat body was reduced in the mutant, with a corresponding, tissue‐specific reduction in translation. Expression of mitochondrial electron transport chain proteins in fat body was increased, leading to increased respiration, which was necessary for IIS‐mediated lifespan extension, and alone sufficient to mediate it. Proteasomal subunits showed altered expression in IIS mutant gut, and gut‐specific over‐expression of the RPN6 proteasomal subunit, was sufficient to increase proteasomal activity and extend lifespan, whilst inhibition of proteasome activity abolished IIS‐mediated longevity. Our study thus uncovered strikingly tissue‐specific responses of cellular processes to lowered IIS acting in concert to ameliorate ageing. John Wiley and Sons Inc. 2017-09-15 /pmc/articles/PMC5615923/ /pubmed/28916541 http://dx.doi.org/10.15252/msb.20177663 Text en © 2017 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the Creative Commons Attribution 4.0 (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 Articles
Tain, Luke S
Sehlke, Robert
Jain, Chirag
Chokkalingam, Manopriya
Nagaraj, Nagarjuna
Essers, Paul
Rassner, Mark
Grönke, Sebastian
Froelich, Jenny
Dieterich, Christoph
Mann, Matthias
Alic, Nazif
Beyer, Andreas
Partridge, Linda
A proteomic atlas of insulin signalling reveals tissue‐specific mechanisms of longevity assurance
title A proteomic atlas of insulin signalling reveals tissue‐specific mechanisms of longevity assurance
title_full A proteomic atlas of insulin signalling reveals tissue‐specific mechanisms of longevity assurance
title_fullStr A proteomic atlas of insulin signalling reveals tissue‐specific mechanisms of longevity assurance
title_full_unstemmed A proteomic atlas of insulin signalling reveals tissue‐specific mechanisms of longevity assurance
title_short A proteomic atlas of insulin signalling reveals tissue‐specific mechanisms of longevity assurance
title_sort proteomic atlas of insulin signalling reveals tissue‐specific mechanisms of longevity assurance
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5615923/
https://www.ncbi.nlm.nih.gov/pubmed/28916541
http://dx.doi.org/10.15252/msb.20177663
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