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Sex-Dependent Role of Adipose Tissue HDAC9 in Diet-Induced Obesity and Metabolic Dysfunction

Obesity is a major risk factor for both metabolic and cardiovascular disease. We reported that, in obese male mice, histone deacetylase 9 (HDAC9) is upregulated in adipose tissues, and global deletion of HDAC9 protected against high fat diet (HFD)-induced obesity and metabolic disease. Here, we inve...

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Autores principales: Goo, Brandee, Ahmadieh, Samah, Zarzour, Abdalrahman, Yiew, Nicole K. H., Kim, David, Shi, Hong, Greenway, Jacob, Cave, Stephen, Nguyen, Jenny, Aribindi, Swetha, Wendolowski, Mark, Veerapaneni, Praneet, Ogbi, Mourad, Chen, Weiqin, Lei, Yun, Lu, Xin-Yun, Kim, Ha Won, Weintraub, Neal L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9454798/
https://www.ncbi.nlm.nih.gov/pubmed/36078104
http://dx.doi.org/10.3390/cells11172698
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author Goo, Brandee
Ahmadieh, Samah
Zarzour, Abdalrahman
Yiew, Nicole K. H.
Kim, David
Shi, Hong
Greenway, Jacob
Cave, Stephen
Nguyen, Jenny
Aribindi, Swetha
Wendolowski, Mark
Veerapaneni, Praneet
Ogbi, Mourad
Chen, Weiqin
Lei, Yun
Lu, Xin-Yun
Kim, Ha Won
Weintraub, Neal L.
author_facet Goo, Brandee
Ahmadieh, Samah
Zarzour, Abdalrahman
Yiew, Nicole K. H.
Kim, David
Shi, Hong
Greenway, Jacob
Cave, Stephen
Nguyen, Jenny
Aribindi, Swetha
Wendolowski, Mark
Veerapaneni, Praneet
Ogbi, Mourad
Chen, Weiqin
Lei, Yun
Lu, Xin-Yun
Kim, Ha Won
Weintraub, Neal L.
author_sort Goo, Brandee
collection PubMed
description Obesity is a major risk factor for both metabolic and cardiovascular disease. We reported that, in obese male mice, histone deacetylase 9 (HDAC9) is upregulated in adipose tissues, and global deletion of HDAC9 protected against high fat diet (HFD)-induced obesity and metabolic disease. Here, we investigated the impact of adipocyte-specific HDAC9 gene deletion on diet-induced obesity in male and female mice. The HDAC9 gene expression was increased in adipose tissues of obese male and female mice and HDAC9 expression correlated positively with body mass index in humans. Interestingly, female, but not male, adipocyte-specific HDAC9 KO mice on HFD exhibited reduced body weight and visceral adipose tissue mass, adipocyte hypertrophy, and improved insulin sensitivity, glucose tolerance and adipogenic differentiation gene expression. Furthermore, adipocyte-specific HDAC9 gene deletion in female mice improved metabolic health as assessed by whole body energy expenditure, oxygen consumption, and adaptive thermogenesis. Mechanistically, compared to female mice, HFD-fed male mice exhibited preferential HDAC9 expression in the stromovascular fraction, which may have offset the impact of adipocyte-specific HDAC9 gene deletion in male mice. These results suggest that HDAC9 expressed in adipocytes is detrimental to obesity in female mice and provides novel evidence of sex-related differences in HDAC9 cellular expression and contribution to obesity-related metabolic disease.
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spelling pubmed-94547982022-09-09 Sex-Dependent Role of Adipose Tissue HDAC9 in Diet-Induced Obesity and Metabolic Dysfunction Goo, Brandee Ahmadieh, Samah Zarzour, Abdalrahman Yiew, Nicole K. H. Kim, David Shi, Hong Greenway, Jacob Cave, Stephen Nguyen, Jenny Aribindi, Swetha Wendolowski, Mark Veerapaneni, Praneet Ogbi, Mourad Chen, Weiqin Lei, Yun Lu, Xin-Yun Kim, Ha Won Weintraub, Neal L. Cells Article Obesity is a major risk factor for both metabolic and cardiovascular disease. We reported that, in obese male mice, histone deacetylase 9 (HDAC9) is upregulated in adipose tissues, and global deletion of HDAC9 protected against high fat diet (HFD)-induced obesity and metabolic disease. Here, we investigated the impact of adipocyte-specific HDAC9 gene deletion on diet-induced obesity in male and female mice. The HDAC9 gene expression was increased in adipose tissues of obese male and female mice and HDAC9 expression correlated positively with body mass index in humans. Interestingly, female, but not male, adipocyte-specific HDAC9 KO mice on HFD exhibited reduced body weight and visceral adipose tissue mass, adipocyte hypertrophy, and improved insulin sensitivity, glucose tolerance and adipogenic differentiation gene expression. Furthermore, adipocyte-specific HDAC9 gene deletion in female mice improved metabolic health as assessed by whole body energy expenditure, oxygen consumption, and adaptive thermogenesis. Mechanistically, compared to female mice, HFD-fed male mice exhibited preferential HDAC9 expression in the stromovascular fraction, which may have offset the impact of adipocyte-specific HDAC9 gene deletion in male mice. These results suggest that HDAC9 expressed in adipocytes is detrimental to obesity in female mice and provides novel evidence of sex-related differences in HDAC9 cellular expression and contribution to obesity-related metabolic disease. MDPI 2022-08-30 /pmc/articles/PMC9454798/ /pubmed/36078104 http://dx.doi.org/10.3390/cells11172698 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Goo, Brandee
Ahmadieh, Samah
Zarzour, Abdalrahman
Yiew, Nicole K. H.
Kim, David
Shi, Hong
Greenway, Jacob
Cave, Stephen
Nguyen, Jenny
Aribindi, Swetha
Wendolowski, Mark
Veerapaneni, Praneet
Ogbi, Mourad
Chen, Weiqin
Lei, Yun
Lu, Xin-Yun
Kim, Ha Won
Weintraub, Neal L.
Sex-Dependent Role of Adipose Tissue HDAC9 in Diet-Induced Obesity and Metabolic Dysfunction
title Sex-Dependent Role of Adipose Tissue HDAC9 in Diet-Induced Obesity and Metabolic Dysfunction
title_full Sex-Dependent Role of Adipose Tissue HDAC9 in Diet-Induced Obesity and Metabolic Dysfunction
title_fullStr Sex-Dependent Role of Adipose Tissue HDAC9 in Diet-Induced Obesity and Metabolic Dysfunction
title_full_unstemmed Sex-Dependent Role of Adipose Tissue HDAC9 in Diet-Induced Obesity and Metabolic Dysfunction
title_short Sex-Dependent Role of Adipose Tissue HDAC9 in Diet-Induced Obesity and Metabolic Dysfunction
title_sort sex-dependent role of adipose tissue hdac9 in diet-induced obesity and metabolic dysfunction
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9454798/
https://www.ncbi.nlm.nih.gov/pubmed/36078104
http://dx.doi.org/10.3390/cells11172698
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