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Obesity-dependent increase in RalA activity disrupts mitochondrial dynamics in white adipocytes

Mitochondrial dysfunction is a characteristic trait of human and rodent obesity, insulin resistance, and fatty liver disease. Here we report that mitochondria undergo fragmentation and reduced oxidative capacity specifically in inguinal white adipose tissue after feeding mice high fat diet (HFD) by...

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Autores principales: xia, Wenmin, Veeragandham, Preethi, Cao, Yu, Xu, Yayun, Rhyne, Torrey, Qian, Jiaxin, Hung, Chao-Wei, Zhao, Peng, Jones, Ying, Gao, Hui, Liddle, Christopher, Yu, Ruth, Downes, Michael, Evans, Ronald, Ryden, Mikael, Wabitsch, Martin, Reilly, Shannon, Huang, Jianfeng, Saltiel, Alan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Journal Experts 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10312969/
https://www.ncbi.nlm.nih.gov/pubmed/37398165
http://dx.doi.org/10.21203/rs.3.rs-2923510/v1
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author xia, Wenmin
Veeragandham, Preethi
Cao, Yu
Xu, Yayun
Rhyne, Torrey
Qian, Jiaxin
Hung, Chao-Wei
Zhao, Peng
Jones, Ying
Gao, Hui
Liddle, Christopher
Yu, Ruth
Downes, Michael
Evans, Ronald
Ryden, Mikael
Wabitsch, Martin
Reilly, Shannon
Huang, Jianfeng
Saltiel, Alan
author_facet xia, Wenmin
Veeragandham, Preethi
Cao, Yu
Xu, Yayun
Rhyne, Torrey
Qian, Jiaxin
Hung, Chao-Wei
Zhao, Peng
Jones, Ying
Gao, Hui
Liddle, Christopher
Yu, Ruth
Downes, Michael
Evans, Ronald
Ryden, Mikael
Wabitsch, Martin
Reilly, Shannon
Huang, Jianfeng
Saltiel, Alan
author_sort xia, Wenmin
collection PubMed
description Mitochondrial dysfunction is a characteristic trait of human and rodent obesity, insulin resistance, and fatty liver disease. Here we report that mitochondria undergo fragmentation and reduced oxidative capacity specifically in inguinal white adipose tissue after feeding mice high fat diet (HFD) by a process dependent on the small GTPase RalA. RalA expression and activity are increased in white adipocytes from mice fed HFD. Targeted deletion of Rala in white adipocytes prevents the obesity-induced fragmentation of mitochondria and produces mice resistant to HFD-induced weight gain via increased fatty acid oxidation. As a result, these mice also exhibit improved glucose tolerance and liver function. In vitro mechanistic studies revealed that RalA suppresses mitochondrial oxidative function in adipocytes by increasing fission through reversing the protein kinase A-catalyzed inhibitory Ser(637)phosphorylation of the mitochondrial fission protein Drp1. Active RalA recruits protein phosphatase 2A (PP2Aa) to specifically dephosphorylate this inhibitory site on Drp1, activating the protein, thus increasing mitochondrial fission. Adipose tissue expression of the human homolog of Drp1, DNML1, is positively correlated with obesity and insulin resistance in patients. Thus, chronic activation of RalA plays a key role in repressing energy expenditure in obese adipose tissue by shifting the balance of mitochondrial dynamics towards excessive fission, contributing to weight gain and related metabolic dysfunction.
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spelling pubmed-103129692023-07-01 Obesity-dependent increase in RalA activity disrupts mitochondrial dynamics in white adipocytes xia, Wenmin Veeragandham, Preethi Cao, Yu Xu, Yayun Rhyne, Torrey Qian, Jiaxin Hung, Chao-Wei Zhao, Peng Jones, Ying Gao, Hui Liddle, Christopher Yu, Ruth Downes, Michael Evans, Ronald Ryden, Mikael Wabitsch, Martin Reilly, Shannon Huang, Jianfeng Saltiel, Alan Res Sq Article Mitochondrial dysfunction is a characteristic trait of human and rodent obesity, insulin resistance, and fatty liver disease. Here we report that mitochondria undergo fragmentation and reduced oxidative capacity specifically in inguinal white adipose tissue after feeding mice high fat diet (HFD) by a process dependent on the small GTPase RalA. RalA expression and activity are increased in white adipocytes from mice fed HFD. Targeted deletion of Rala in white adipocytes prevents the obesity-induced fragmentation of mitochondria and produces mice resistant to HFD-induced weight gain via increased fatty acid oxidation. As a result, these mice also exhibit improved glucose tolerance and liver function. In vitro mechanistic studies revealed that RalA suppresses mitochondrial oxidative function in adipocytes by increasing fission through reversing the protein kinase A-catalyzed inhibitory Ser(637)phosphorylation of the mitochondrial fission protein Drp1. Active RalA recruits protein phosphatase 2A (PP2Aa) to specifically dephosphorylate this inhibitory site on Drp1, activating the protein, thus increasing mitochondrial fission. Adipose tissue expression of the human homolog of Drp1, DNML1, is positively correlated with obesity and insulin resistance in patients. Thus, chronic activation of RalA plays a key role in repressing energy expenditure in obese adipose tissue by shifting the balance of mitochondrial dynamics towards excessive fission, contributing to weight gain and related metabolic dysfunction. American Journal Experts 2023-06-02 /pmc/articles/PMC10312969/ /pubmed/37398165 http://dx.doi.org/10.21203/rs.3.rs-2923510/v1 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
xia, Wenmin
Veeragandham, Preethi
Cao, Yu
Xu, Yayun
Rhyne, Torrey
Qian, Jiaxin
Hung, Chao-Wei
Zhao, Peng
Jones, Ying
Gao, Hui
Liddle, Christopher
Yu, Ruth
Downes, Michael
Evans, Ronald
Ryden, Mikael
Wabitsch, Martin
Reilly, Shannon
Huang, Jianfeng
Saltiel, Alan
Obesity-dependent increase in RalA activity disrupts mitochondrial dynamics in white adipocytes
title Obesity-dependent increase in RalA activity disrupts mitochondrial dynamics in white adipocytes
title_full Obesity-dependent increase in RalA activity disrupts mitochondrial dynamics in white adipocytes
title_fullStr Obesity-dependent increase in RalA activity disrupts mitochondrial dynamics in white adipocytes
title_full_unstemmed Obesity-dependent increase in RalA activity disrupts mitochondrial dynamics in white adipocytes
title_short Obesity-dependent increase in RalA activity disrupts mitochondrial dynamics in white adipocytes
title_sort obesity-dependent increase in rala activity disrupts mitochondrial dynamics in white adipocytes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10312969/
https://www.ncbi.nlm.nih.gov/pubmed/37398165
http://dx.doi.org/10.21203/rs.3.rs-2923510/v1
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