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Folliculin Regulates Ampk-Dependent Autophagy and Metabolic Stress Survival

Dysregulation of AMPK signaling has been implicated in many human diseases, which emphasizes the importance of characterizing AMPK regulators. The tumor suppressor FLCN, responsible for the Birt-Hogg Dubé renal neoplasia syndrome (BHD), is an AMPK-binding partner but the genetic and functional links...

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Autores principales: Possik, Elite, Jalali, Zahra, Nouët, Yann, Yan, Ming, Gingras, Marie-Claude, Schmeisser, Kathrin, Panaite, Lorena, Dupuy, Fanny, Kharitidi, Dmitri, Chotard, Laëtitia, Jones, Russell G., Hall, David H., Pause, Arnim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3998892/
https://www.ncbi.nlm.nih.gov/pubmed/24763318
http://dx.doi.org/10.1371/journal.pgen.1004273
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author Possik, Elite
Jalali, Zahra
Nouët, Yann
Yan, Ming
Gingras, Marie-Claude
Schmeisser, Kathrin
Panaite, Lorena
Dupuy, Fanny
Kharitidi, Dmitri
Chotard, Laëtitia
Jones, Russell G.
Hall, David H.
Pause, Arnim
author_facet Possik, Elite
Jalali, Zahra
Nouët, Yann
Yan, Ming
Gingras, Marie-Claude
Schmeisser, Kathrin
Panaite, Lorena
Dupuy, Fanny
Kharitidi, Dmitri
Chotard, Laëtitia
Jones, Russell G.
Hall, David H.
Pause, Arnim
author_sort Possik, Elite
collection PubMed
description Dysregulation of AMPK signaling has been implicated in many human diseases, which emphasizes the importance of characterizing AMPK regulators. The tumor suppressor FLCN, responsible for the Birt-Hogg Dubé renal neoplasia syndrome (BHD), is an AMPK-binding partner but the genetic and functional links between FLCN and AMPK have not been established. Strikingly, the majority of naturally occurring FLCN mutations predisposing to BHD are predicted to produce truncated proteins unable to bind AMPK, pointing to the critical role of this interaction in the tumor suppression mechanism. Here, we demonstrate that FLCN is an evolutionarily conserved negative regulator of AMPK. Using Caenorhabditis elegans and mammalian cells, we show that loss of FLCN results in constitutive activation of AMPK which induces autophagy, inhibits apoptosis, improves cellular bioenergetics, and confers resistance to energy-depleting stresses including oxidative stress, heat, anoxia, and serum deprivation. We further show that AMPK activation conferred by FLCN loss is independent of the cellular energy state suggesting that FLCN controls the AMPK energy sensing ability. Together, our data suggest that FLCN is an evolutionarily conserved regulator of AMPK signaling that may act as a tumor suppressor by negatively regulating AMPK function.
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spelling pubmed-39988922014-04-29 Folliculin Regulates Ampk-Dependent Autophagy and Metabolic Stress Survival Possik, Elite Jalali, Zahra Nouët, Yann Yan, Ming Gingras, Marie-Claude Schmeisser, Kathrin Panaite, Lorena Dupuy, Fanny Kharitidi, Dmitri Chotard, Laëtitia Jones, Russell G. Hall, David H. Pause, Arnim PLoS Genet Research Article Dysregulation of AMPK signaling has been implicated in many human diseases, which emphasizes the importance of characterizing AMPK regulators. The tumor suppressor FLCN, responsible for the Birt-Hogg Dubé renal neoplasia syndrome (BHD), is an AMPK-binding partner but the genetic and functional links between FLCN and AMPK have not been established. Strikingly, the majority of naturally occurring FLCN mutations predisposing to BHD are predicted to produce truncated proteins unable to bind AMPK, pointing to the critical role of this interaction in the tumor suppression mechanism. Here, we demonstrate that FLCN is an evolutionarily conserved negative regulator of AMPK. Using Caenorhabditis elegans and mammalian cells, we show that loss of FLCN results in constitutive activation of AMPK which induces autophagy, inhibits apoptosis, improves cellular bioenergetics, and confers resistance to energy-depleting stresses including oxidative stress, heat, anoxia, and serum deprivation. We further show that AMPK activation conferred by FLCN loss is independent of the cellular energy state suggesting that FLCN controls the AMPK energy sensing ability. Together, our data suggest that FLCN is an evolutionarily conserved regulator of AMPK signaling that may act as a tumor suppressor by negatively regulating AMPK function. Public Library of Science 2014-04-24 /pmc/articles/PMC3998892/ /pubmed/24763318 http://dx.doi.org/10.1371/journal.pgen.1004273 Text en © 2014 Possik 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
Possik, Elite
Jalali, Zahra
Nouët, Yann
Yan, Ming
Gingras, Marie-Claude
Schmeisser, Kathrin
Panaite, Lorena
Dupuy, Fanny
Kharitidi, Dmitri
Chotard, Laëtitia
Jones, Russell G.
Hall, David H.
Pause, Arnim
Folliculin Regulates Ampk-Dependent Autophagy and Metabolic Stress Survival
title Folliculin Regulates Ampk-Dependent Autophagy and Metabolic Stress Survival
title_full Folliculin Regulates Ampk-Dependent Autophagy and Metabolic Stress Survival
title_fullStr Folliculin Regulates Ampk-Dependent Autophagy and Metabolic Stress Survival
title_full_unstemmed Folliculin Regulates Ampk-Dependent Autophagy and Metabolic Stress Survival
title_short Folliculin Regulates Ampk-Dependent Autophagy and Metabolic Stress Survival
title_sort folliculin regulates ampk-dependent autophagy and metabolic stress survival
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3998892/
https://www.ncbi.nlm.nih.gov/pubmed/24763318
http://dx.doi.org/10.1371/journal.pgen.1004273
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