Role of p110a subunit of PI3-kinase in skeletal muscle mitochondrial homeostasis and metabolism

Diabetes is associated with decreased PI3K activation in skeletal muscle. Here, the authors show that p110a is the predominant PI3K subunit in muscle, and show that its ablation in muscle, but not ablation of p110beta, leads to insulin resistance, increased proteosomal and autophagic activity, and a...

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Autores principales: Mengyao Ella Li, Hans P. M. M. Lauritzen, Brian T. O’Neill, Chih-Hao Wang, Weikang Cai, Bruna B. Brandao, Masaji Sakaguchi, Rongya Tao, Michael F. Hirshman, Samir Softic, C. Ronald Kahn
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/dd1ee7415b94490ba84eaa4f18e22335
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spelling oai:doaj.org-article:dd1ee7415b94490ba84eaa4f18e223352021-12-02T14:39:00ZRole of p110a subunit of PI3-kinase in skeletal muscle mitochondrial homeostasis and metabolism10.1038/s41467-019-11265-y2041-1723https://doaj.org/article/dd1ee7415b94490ba84eaa4f18e223352019-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-11265-yhttps://doaj.org/toc/2041-1723Diabetes is associated with decreased PI3K activation in skeletal muscle. Here, the authors show that p110a is the predominant PI3K subunit in muscle, and show that its ablation in muscle, but not ablation of p110beta, leads to insulin resistance, increased proteosomal and autophagic activity, and altered mitochondria homeostasis in mice.Mengyao Ella LiHans P. M. M. LauritzenBrian T. O’NeillChih-Hao WangWeikang CaiBruna B. BrandaoMasaji SakaguchiRongya TaoMichael F. HirshmanSamir SofticC. Ronald KahnNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-14 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Mengyao Ella Li
Hans P. M. M. Lauritzen
Brian T. O’Neill
Chih-Hao Wang
Weikang Cai
Bruna B. Brandao
Masaji Sakaguchi
Rongya Tao
Michael F. Hirshman
Samir Softic
C. Ronald Kahn
Role of p110a subunit of PI3-kinase in skeletal muscle mitochondrial homeostasis and metabolism
description Diabetes is associated with decreased PI3K activation in skeletal muscle. Here, the authors show that p110a is the predominant PI3K subunit in muscle, and show that its ablation in muscle, but not ablation of p110beta, leads to insulin resistance, increased proteosomal and autophagic activity, and altered mitochondria homeostasis in mice.
format article
author Mengyao Ella Li
Hans P. M. M. Lauritzen
Brian T. O’Neill
Chih-Hao Wang
Weikang Cai
Bruna B. Brandao
Masaji Sakaguchi
Rongya Tao
Michael F. Hirshman
Samir Softic
C. Ronald Kahn
author_facet Mengyao Ella Li
Hans P. M. M. Lauritzen
Brian T. O’Neill
Chih-Hao Wang
Weikang Cai
Bruna B. Brandao
Masaji Sakaguchi
Rongya Tao
Michael F. Hirshman
Samir Softic
C. Ronald Kahn
author_sort Mengyao Ella Li
title Role of p110a subunit of PI3-kinase in skeletal muscle mitochondrial homeostasis and metabolism
title_short Role of p110a subunit of PI3-kinase in skeletal muscle mitochondrial homeostasis and metabolism
title_full Role of p110a subunit of PI3-kinase in skeletal muscle mitochondrial homeostasis and metabolism
title_fullStr Role of p110a subunit of PI3-kinase in skeletal muscle mitochondrial homeostasis and metabolism
title_full_unstemmed Role of p110a subunit of PI3-kinase in skeletal muscle mitochondrial homeostasis and metabolism
title_sort role of p110a subunit of pi3-kinase in skeletal muscle mitochondrial homeostasis and metabolism
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/dd1ee7415b94490ba84eaa4f18e22335
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