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PPAR-γ integrates obesity and adipocyte clock through epigenetic regulation of Bmal1

While growing evidence suggests that circadian clock and obesity are intertwined, the underlying mechanism is poorly understood. Here, we investigate how circadian clock is linked to obesity. Methods: Metabolomics profiling of WAT (white adipose tissue) samples was performed to identify the metaboli...

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Autores principales: Wang, Shuai, Lin, Yanke, Gao, Lu, Yang, Zemin, Lin, Jingpan, Ren, Shujing, Li, Feng, Chen, Jing, Wang, Zhigang, Dong, Zhiyong, Sun, Pinghua, Wu, Baojian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8825584/
https://www.ncbi.nlm.nih.gov/pubmed/35198059
http://dx.doi.org/10.7150/thno.69054
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author Wang, Shuai
Lin, Yanke
Gao, Lu
Yang, Zemin
Lin, Jingpan
Ren, Shujing
Li, Feng
Chen, Jing
Wang, Zhigang
Dong, Zhiyong
Sun, Pinghua
Wu, Baojian
author_facet Wang, Shuai
Lin, Yanke
Gao, Lu
Yang, Zemin
Lin, Jingpan
Ren, Shujing
Li, Feng
Chen, Jing
Wang, Zhigang
Dong, Zhiyong
Sun, Pinghua
Wu, Baojian
author_sort Wang, Shuai
collection PubMed
description While growing evidence suggests that circadian clock and obesity are intertwined, the underlying mechanism is poorly understood. Here, we investigate how circadian clock is linked to obesity. Methods: Metabolomics profiling of WAT (white adipose tissue) samples was performed to identify the metabolites altered in obese model. mRNA levels were analyzed by qPCR assays. Proteins were detected by immunoblotting, immunofluorescence and ELISA. ChIP and luciferase reporter assays were used to investigate epigenetic and transcriptional regulation. Results: Obesity causes perturbance of circadian clock in WAT in mice and humans, particularly, BMAL1 is markedly reduced. Metabolomic analysis reveals reduced glutamine and methionine in obese WAT. Glutamine metabolism contributes to production of acetyl-CoA, whereas methionine metabolism generates S-adenosyl methionine (SAM). Acetyl-CoA and SAM are the substrates for histone acetylation and methylation, respectively. Reduced glutamine and methionine in obese WAT are associated with decreased H3K27ac and H3K4me3 at Bmal1 promoter. Consistently, glutamine or methionine administration in vitro and in vivo increases H3K27ac or H3K4me3, promoting Bmal1 transcription and expression. A screen of transport and metabolic genes identifies downregulation of the uptake transporter SLC1A5 as a cause of reduced glutamine or methionine in obese WAT. Moreover, we observe impaired expression of PPAR-γ in obese WAT. PPAR-γ trans-activates Slc1a5 via direct binding to a response element in promoter. Conclusion: Impaired PPAR-γ in obesity provokes downregulation of SLC1A5 and reductions in adipocyte uptake of glutamine and methionine (two epigenetic modulators), leading to disruption of Bmal1. Therefore, PPAR-γ integrates obesity and adipocyte clock, promoting a vicious cycle between circadian disruption and obesity development.
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spelling pubmed-88255842022-02-22 PPAR-γ integrates obesity and adipocyte clock through epigenetic regulation of Bmal1 Wang, Shuai Lin, Yanke Gao, Lu Yang, Zemin Lin, Jingpan Ren, Shujing Li, Feng Chen, Jing Wang, Zhigang Dong, Zhiyong Sun, Pinghua Wu, Baojian Theranostics Research Paper While growing evidence suggests that circadian clock and obesity are intertwined, the underlying mechanism is poorly understood. Here, we investigate how circadian clock is linked to obesity. Methods: Metabolomics profiling of WAT (white adipose tissue) samples was performed to identify the metabolites altered in obese model. mRNA levels were analyzed by qPCR assays. Proteins were detected by immunoblotting, immunofluorescence and ELISA. ChIP and luciferase reporter assays were used to investigate epigenetic and transcriptional regulation. Results: Obesity causes perturbance of circadian clock in WAT in mice and humans, particularly, BMAL1 is markedly reduced. Metabolomic analysis reveals reduced glutamine and methionine in obese WAT. Glutamine metabolism contributes to production of acetyl-CoA, whereas methionine metabolism generates S-adenosyl methionine (SAM). Acetyl-CoA and SAM are the substrates for histone acetylation and methylation, respectively. Reduced glutamine and methionine in obese WAT are associated with decreased H3K27ac and H3K4me3 at Bmal1 promoter. Consistently, glutamine or methionine administration in vitro and in vivo increases H3K27ac or H3K4me3, promoting Bmal1 transcription and expression. A screen of transport and metabolic genes identifies downregulation of the uptake transporter SLC1A5 as a cause of reduced glutamine or methionine in obese WAT. Moreover, we observe impaired expression of PPAR-γ in obese WAT. PPAR-γ trans-activates Slc1a5 via direct binding to a response element in promoter. Conclusion: Impaired PPAR-γ in obesity provokes downregulation of SLC1A5 and reductions in adipocyte uptake of glutamine and methionine (two epigenetic modulators), leading to disruption of Bmal1. Therefore, PPAR-γ integrates obesity and adipocyte clock, promoting a vicious cycle between circadian disruption and obesity development. Ivyspring International Publisher 2022-01-16 /pmc/articles/PMC8825584/ /pubmed/35198059 http://dx.doi.org/10.7150/thno.69054 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Wang, Shuai
Lin, Yanke
Gao, Lu
Yang, Zemin
Lin, Jingpan
Ren, Shujing
Li, Feng
Chen, Jing
Wang, Zhigang
Dong, Zhiyong
Sun, Pinghua
Wu, Baojian
PPAR-γ integrates obesity and adipocyte clock through epigenetic regulation of Bmal1
title PPAR-γ integrates obesity and adipocyte clock through epigenetic regulation of Bmal1
title_full PPAR-γ integrates obesity and adipocyte clock through epigenetic regulation of Bmal1
title_fullStr PPAR-γ integrates obesity and adipocyte clock through epigenetic regulation of Bmal1
title_full_unstemmed PPAR-γ integrates obesity and adipocyte clock through epigenetic regulation of Bmal1
title_short PPAR-γ integrates obesity and adipocyte clock through epigenetic regulation of Bmal1
title_sort ppar-γ integrates obesity and adipocyte clock through epigenetic regulation of bmal1
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8825584/
https://www.ncbi.nlm.nih.gov/pubmed/35198059
http://dx.doi.org/10.7150/thno.69054
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