The class 3 PI3K coordinates autophagy and mitochondrial lipid catabolism by controlling nuclear receptor PPARα

Peroxisome Proliferator Activated Receptor alpha (PPARα) drives fatty acid catabolism. Here, the authors show that in liver of autophagy deficient class 3 phosphoinositide 3-kinase mutant mice PPARα transcriptional repressors fail to degrade in lysosomes and accumulate leading to PPARα inhibition an...

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Autores principales: Anton Iershov, Ivan Nemazanyy, Chantal Alkhoury, Muriel Girard, Esther Barth, Nicolas Cagnard, Alexandra Montagner, Dominique Chretien, Elena I. Rugarli, Herve Guillou, Mario Pende, Ganna Panasyuk
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Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/942549d8fc9a4e9396af183cc1bf5645
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spelling oai:doaj.org-article:942549d8fc9a4e9396af183cc1bf56452021-12-02T15:36:06ZThe class 3 PI3K coordinates autophagy and mitochondrial lipid catabolism by controlling nuclear receptor PPARα10.1038/s41467-019-09598-92041-1723https://doaj.org/article/942549d8fc9a4e9396af183cc1bf56452019-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09598-9https://doaj.org/toc/2041-1723Peroxisome Proliferator Activated Receptor alpha (PPARα) drives fatty acid catabolism. Here, the authors show that in liver of autophagy deficient class 3 phosphoinositide 3-kinase mutant mice PPARα transcriptional repressors fail to degrade in lysosomes and accumulate leading to PPARα inhibition and blunted transcriptional responses during fasting.Anton IershovIvan NemazanyyChantal AlkhouryMuriel GirardEsther BarthNicolas CagnardAlexandra MontagnerDominique ChretienElena I. RugarliHerve GuillouMario PendeGanna PanasyukNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-18 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Anton Iershov
Ivan Nemazanyy
Chantal Alkhoury
Muriel Girard
Esther Barth
Nicolas Cagnard
Alexandra Montagner
Dominique Chretien
Elena I. Rugarli
Herve Guillou
Mario Pende
Ganna Panasyuk
The class 3 PI3K coordinates autophagy and mitochondrial lipid catabolism by controlling nuclear receptor PPARα
description Peroxisome Proliferator Activated Receptor alpha (PPARα) drives fatty acid catabolism. Here, the authors show that in liver of autophagy deficient class 3 phosphoinositide 3-kinase mutant mice PPARα transcriptional repressors fail to degrade in lysosomes and accumulate leading to PPARα inhibition and blunted transcriptional responses during fasting.
format article
author Anton Iershov
Ivan Nemazanyy
Chantal Alkhoury
Muriel Girard
Esther Barth
Nicolas Cagnard
Alexandra Montagner
Dominique Chretien
Elena I. Rugarli
Herve Guillou
Mario Pende
Ganna Panasyuk
author_facet Anton Iershov
Ivan Nemazanyy
Chantal Alkhoury
Muriel Girard
Esther Barth
Nicolas Cagnard
Alexandra Montagner
Dominique Chretien
Elena I. Rugarli
Herve Guillou
Mario Pende
Ganna Panasyuk
author_sort Anton Iershov
title The class 3 PI3K coordinates autophagy and mitochondrial lipid catabolism by controlling nuclear receptor PPARα
title_short The class 3 PI3K coordinates autophagy and mitochondrial lipid catabolism by controlling nuclear receptor PPARα
title_full The class 3 PI3K coordinates autophagy and mitochondrial lipid catabolism by controlling nuclear receptor PPARα
title_fullStr The class 3 PI3K coordinates autophagy and mitochondrial lipid catabolism by controlling nuclear receptor PPARα
title_full_unstemmed The class 3 PI3K coordinates autophagy and mitochondrial lipid catabolism by controlling nuclear receptor PPARα
title_sort class 3 pi3k coordinates autophagy and mitochondrial lipid catabolism by controlling nuclear receptor pparα
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/942549d8fc9a4e9396af183cc1bf5645
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