Cargando…

Regulation of Lifespan, Metabolism, and Stress Responses by the Drosophila SH2B Protein, Lnk

Drosophila Lnk is the single ancestral orthologue of a highly conserved family of structurally-related intracellular adaptor proteins, the SH2B proteins. As adaptors, they lack catalytic activity but contain several protein–protein interaction domains, thus playing a critical role in signal transduc...

Descripción completa

Detalles Bibliográficos
Autores principales: Slack, Cathy, Werz, Christian, Wieser, Daniela, Alic, Nazif, Foley, Andrea, Stocker, Hugo, Withers, Dominic J., Thornton, Janet M., Hafen, Ernst, Partridge, Linda
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2841611/
https://www.ncbi.nlm.nih.gov/pubmed/20333234
http://dx.doi.org/10.1371/journal.pgen.1000881
_version_ 1782179137389068288
author Slack, Cathy
Werz, Christian
Wieser, Daniela
Alic, Nazif
Foley, Andrea
Stocker, Hugo
Withers, Dominic J.
Thornton, Janet M.
Hafen, Ernst
Partridge, Linda
author_facet Slack, Cathy
Werz, Christian
Wieser, Daniela
Alic, Nazif
Foley, Andrea
Stocker, Hugo
Withers, Dominic J.
Thornton, Janet M.
Hafen, Ernst
Partridge, Linda
author_sort Slack, Cathy
collection PubMed
description Drosophila Lnk is the single ancestral orthologue of a highly conserved family of structurally-related intracellular adaptor proteins, the SH2B proteins. As adaptors, they lack catalytic activity but contain several protein–protein interaction domains, thus playing a critical role in signal transduction from receptor tyrosine kinases to form protein networks. Physiological studies of SH2B function in mammals have produced conflicting data. However, a recent study in Drosophila has shown that Lnk is an important regulator of the insulin/insulin-like growth factor (IGF)-1 signaling (IIS) pathway during growth, functioning in parallel to the insulin receptor substrate, Chico. As this pathway also has an evolutionary conserved role in the determination of organism lifespan, we investigated whether Lnk is required for normal lifespan in Drosophila. Phenotypic analysis of mutants for Lnk revealed that loss of Lnk function results in increased lifespan and improved survival under conditions of oxidative stress and starvation. Starvation resistance was found to be associated with increased metabolic stores of carbohydrates and lipids indicative of impaired metabolism. Biochemical and genetic data suggest that Lnk functions in both the IIS and Ras/Mitogen activated protein Kinase (MapK) signaling pathways. Microarray studies support this model, showing transcriptional feedback onto genes in both pathways as well as indicating global changes in both lipid and carbohydrate metabolism. Finally, our data also suggest that Lnk itself may be a direct target of the IIS responsive transcription factor, dFoxo, and that dFoxo may repress Lnk expression. We therefore describe novel functions for a member of the SH2B protein family and provide the first evidence for potential mechanisms of SH2B regulation. Our findings suggest that IIS signaling in Drosophila may require the activity of a second intracellular adaptor, thereby yielding fundamental new insights into the functioning and role of the IIS pathway in ageing and metabolism.
format Text
id pubmed-2841611
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-28416112010-03-24 Regulation of Lifespan, Metabolism, and Stress Responses by the Drosophila SH2B Protein, Lnk Slack, Cathy Werz, Christian Wieser, Daniela Alic, Nazif Foley, Andrea Stocker, Hugo Withers, Dominic J. Thornton, Janet M. Hafen, Ernst Partridge, Linda PLoS Genet Research Article Drosophila Lnk is the single ancestral orthologue of a highly conserved family of structurally-related intracellular adaptor proteins, the SH2B proteins. As adaptors, they lack catalytic activity but contain several protein–protein interaction domains, thus playing a critical role in signal transduction from receptor tyrosine kinases to form protein networks. Physiological studies of SH2B function in mammals have produced conflicting data. However, a recent study in Drosophila has shown that Lnk is an important regulator of the insulin/insulin-like growth factor (IGF)-1 signaling (IIS) pathway during growth, functioning in parallel to the insulin receptor substrate, Chico. As this pathway also has an evolutionary conserved role in the determination of organism lifespan, we investigated whether Lnk is required for normal lifespan in Drosophila. Phenotypic analysis of mutants for Lnk revealed that loss of Lnk function results in increased lifespan and improved survival under conditions of oxidative stress and starvation. Starvation resistance was found to be associated with increased metabolic stores of carbohydrates and lipids indicative of impaired metabolism. Biochemical and genetic data suggest that Lnk functions in both the IIS and Ras/Mitogen activated protein Kinase (MapK) signaling pathways. Microarray studies support this model, showing transcriptional feedback onto genes in both pathways as well as indicating global changes in both lipid and carbohydrate metabolism. Finally, our data also suggest that Lnk itself may be a direct target of the IIS responsive transcription factor, dFoxo, and that dFoxo may repress Lnk expression. We therefore describe novel functions for a member of the SH2B protein family and provide the first evidence for potential mechanisms of SH2B regulation. Our findings suggest that IIS signaling in Drosophila may require the activity of a second intracellular adaptor, thereby yielding fundamental new insights into the functioning and role of the IIS pathway in ageing and metabolism. Public Library of Science 2010-03-19 /pmc/articles/PMC2841611/ /pubmed/20333234 http://dx.doi.org/10.1371/journal.pgen.1000881 Text en Slack et al. http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Slack, Cathy
Werz, Christian
Wieser, Daniela
Alic, Nazif
Foley, Andrea
Stocker, Hugo
Withers, Dominic J.
Thornton, Janet M.
Hafen, Ernst
Partridge, Linda
Regulation of Lifespan, Metabolism, and Stress Responses by the Drosophila SH2B Protein, Lnk
title Regulation of Lifespan, Metabolism, and Stress Responses by the Drosophila SH2B Protein, Lnk
title_full Regulation of Lifespan, Metabolism, and Stress Responses by the Drosophila SH2B Protein, Lnk
title_fullStr Regulation of Lifespan, Metabolism, and Stress Responses by the Drosophila SH2B Protein, Lnk
title_full_unstemmed Regulation of Lifespan, Metabolism, and Stress Responses by the Drosophila SH2B Protein, Lnk
title_short Regulation of Lifespan, Metabolism, and Stress Responses by the Drosophila SH2B Protein, Lnk
title_sort regulation of lifespan, metabolism, and stress responses by the drosophila sh2b protein, lnk
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2841611/
https://www.ncbi.nlm.nih.gov/pubmed/20333234
http://dx.doi.org/10.1371/journal.pgen.1000881
work_keys_str_mv AT slackcathy regulationoflifespanmetabolismandstressresponsesbythedrosophilash2bproteinlnk
AT werzchristian regulationoflifespanmetabolismandstressresponsesbythedrosophilash2bproteinlnk
AT wieserdaniela regulationoflifespanmetabolismandstressresponsesbythedrosophilash2bproteinlnk
AT alicnazif regulationoflifespanmetabolismandstressresponsesbythedrosophilash2bproteinlnk
AT foleyandrea regulationoflifespanmetabolismandstressresponsesbythedrosophilash2bproteinlnk
AT stockerhugo regulationoflifespanmetabolismandstressresponsesbythedrosophilash2bproteinlnk
AT withersdominicj regulationoflifespanmetabolismandstressresponsesbythedrosophilash2bproteinlnk
AT thorntonjanetm regulationoflifespanmetabolismandstressresponsesbythedrosophilash2bproteinlnk
AT hafenernst regulationoflifespanmetabolismandstressresponsesbythedrosophilash2bproteinlnk
AT partridgelinda regulationoflifespanmetabolismandstressresponsesbythedrosophilash2bproteinlnk