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Integrin-linked kinase modulates longevity and thermotolerance in C. elegans through neuronal control of HSF-1

Integrin-signaling complexes play important roles in cytoskeletal organization and cell adhesion in many species. Components of the integrin-signaling complex have been linked to aging in both Caenorhabditis elegans and Drosophila melanogaster, but the mechanism underlying this function is unknown....

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Autores principales: Kumsta, Caroline, Ching, Tsui-Ting, Nishimura, Mayuko, Davis, Andrew E, Gelino, Sara, Catan, Hannah H, Yu, Xiaokun, Chu, Chu-Chiao, Ong, Binnan, Panowski, Siler H, Baird, Nathan, Bodmer, Rolf, Hsu, Ao-Lin, Hansen, Malene
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4059541/
https://www.ncbi.nlm.nih.gov/pubmed/24314125
http://dx.doi.org/10.1111/acel.12189
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author Kumsta, Caroline
Ching, Tsui-Ting
Nishimura, Mayuko
Davis, Andrew E
Gelino, Sara
Catan, Hannah H
Yu, Xiaokun
Chu, Chu-Chiao
Ong, Binnan
Panowski, Siler H
Baird, Nathan
Bodmer, Rolf
Hsu, Ao-Lin
Hansen, Malene
author_facet Kumsta, Caroline
Ching, Tsui-Ting
Nishimura, Mayuko
Davis, Andrew E
Gelino, Sara
Catan, Hannah H
Yu, Xiaokun
Chu, Chu-Chiao
Ong, Binnan
Panowski, Siler H
Baird, Nathan
Bodmer, Rolf
Hsu, Ao-Lin
Hansen, Malene
author_sort Kumsta, Caroline
collection PubMed
description Integrin-signaling complexes play important roles in cytoskeletal organization and cell adhesion in many species. Components of the integrin-signaling complex have been linked to aging in both Caenorhabditis elegans and Drosophila melanogaster, but the mechanism underlying this function is unknown. Here, we investigated the role of integrin-linked kinase (ILK), a key component of the integrin-signaling complex, in lifespan determination. We report that genetic reduction of ILK in both C. elegans and Drosophila increased resistance to heat stress, and led to lifespan extension in C. elegans without majorly affecting cytoskeletal integrity. In C. elegans, longevity and thermotolerance induced by ILK depletion was mediated by heat-shock factor-1 (HSF-1), a major transcriptional regulator of the heat-shock response (HSR). Reduction in ILK levels increased hsf-1 transcription and activation, and led to enhanced expression of a subset of genes with roles in the HSR. Moreover, induction of HSR-related genes, longevity and thermotolerance caused by ILK reduction required the thermosensory neurons AFD and interneurons AIY, which are known to play a critical role in the canonical HSR. Notably, ILK was expressed in neighboring neurons, but not in AFD or AIY, implying that ILK reduction initiates cell nonautonomous signaling through thermosensory neurons to elicit a noncanonical HSR. Our results thus identify HSF-1 as a novel effector of the organismal response to reduced ILK levels and show that ILK inhibition regulates HSF-1 in a cell nonautonomous fashion to enhance stress resistance and lifespan in C. elegans.
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spelling pubmed-40595412014-06-16 Integrin-linked kinase modulates longevity and thermotolerance in C. elegans through neuronal control of HSF-1 Kumsta, Caroline Ching, Tsui-Ting Nishimura, Mayuko Davis, Andrew E Gelino, Sara Catan, Hannah H Yu, Xiaokun Chu, Chu-Chiao Ong, Binnan Panowski, Siler H Baird, Nathan Bodmer, Rolf Hsu, Ao-Lin Hansen, Malene Aging Cell Original Articles Integrin-signaling complexes play important roles in cytoskeletal organization and cell adhesion in many species. Components of the integrin-signaling complex have been linked to aging in both Caenorhabditis elegans and Drosophila melanogaster, but the mechanism underlying this function is unknown. Here, we investigated the role of integrin-linked kinase (ILK), a key component of the integrin-signaling complex, in lifespan determination. We report that genetic reduction of ILK in both C. elegans and Drosophila increased resistance to heat stress, and led to lifespan extension in C. elegans without majorly affecting cytoskeletal integrity. In C. elegans, longevity and thermotolerance induced by ILK depletion was mediated by heat-shock factor-1 (HSF-1), a major transcriptional regulator of the heat-shock response (HSR). Reduction in ILK levels increased hsf-1 transcription and activation, and led to enhanced expression of a subset of genes with roles in the HSR. Moreover, induction of HSR-related genes, longevity and thermotolerance caused by ILK reduction required the thermosensory neurons AFD and interneurons AIY, which are known to play a critical role in the canonical HSR. Notably, ILK was expressed in neighboring neurons, but not in AFD or AIY, implying that ILK reduction initiates cell nonautonomous signaling through thermosensory neurons to elicit a noncanonical HSR. Our results thus identify HSF-1 as a novel effector of the organismal response to reduced ILK levels and show that ILK inhibition regulates HSF-1 in a cell nonautonomous fashion to enhance stress resistance and lifespan in C. elegans. BlackWell Publishing Ltd 2014-06 2014-01-09 /pmc/articles/PMC4059541/ /pubmed/24314125 http://dx.doi.org/10.1111/acel.12189 Text en © 2014 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. http://creativecommons.org/licenses/by/3.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Kumsta, Caroline
Ching, Tsui-Ting
Nishimura, Mayuko
Davis, Andrew E
Gelino, Sara
Catan, Hannah H
Yu, Xiaokun
Chu, Chu-Chiao
Ong, Binnan
Panowski, Siler H
Baird, Nathan
Bodmer, Rolf
Hsu, Ao-Lin
Hansen, Malene
Integrin-linked kinase modulates longevity and thermotolerance in C. elegans through neuronal control of HSF-1
title Integrin-linked kinase modulates longevity and thermotolerance in C. elegans through neuronal control of HSF-1
title_full Integrin-linked kinase modulates longevity and thermotolerance in C. elegans through neuronal control of HSF-1
title_fullStr Integrin-linked kinase modulates longevity and thermotolerance in C. elegans through neuronal control of HSF-1
title_full_unstemmed Integrin-linked kinase modulates longevity and thermotolerance in C. elegans through neuronal control of HSF-1
title_short Integrin-linked kinase modulates longevity and thermotolerance in C. elegans through neuronal control of HSF-1
title_sort integrin-linked kinase modulates longevity and thermotolerance in c. elegans through neuronal control of hsf-1
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4059541/
https://www.ncbi.nlm.nih.gov/pubmed/24314125
http://dx.doi.org/10.1111/acel.12189
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