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HOXC10 Suppresses Browning to Maintain White Adipocyte Identity

Promoting beige adipocyte development within white adipose tissue (WAT) is a potential therapeutic approach to staunch the current obesity epidemic. Previously, we identified homeobox-containing transcription factor HOXC10 as a suppressor of browning in subcutaneous WAT. Here, we provide evidence fo...

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Autores principales: Tan, H.Y. Angeline, Sim, M.F. Michelle, Tan, Shi-Xiong, Ng, Yvonne, Gan, Sin Yee, Li, Hongyu, Neo, Suat Peng, Gunaratne, Jayantha, Xu, Feng, Han, Weiping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8385616/
https://www.ncbi.nlm.nih.gov/pubmed/33990396
http://dx.doi.org/10.2337/db21-0114
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author Tan, H.Y. Angeline
Sim, M.F. Michelle
Tan, Shi-Xiong
Ng, Yvonne
Gan, Sin Yee
Li, Hongyu
Neo, Suat Peng
Gunaratne, Jayantha
Xu, Feng
Han, Weiping
author_facet Tan, H.Y. Angeline
Sim, M.F. Michelle
Tan, Shi-Xiong
Ng, Yvonne
Gan, Sin Yee
Li, Hongyu
Neo, Suat Peng
Gunaratne, Jayantha
Xu, Feng
Han, Weiping
author_sort Tan, H.Y. Angeline
collection PubMed
description Promoting beige adipocyte development within white adipose tissue (WAT) is a potential therapeutic approach to staunch the current obesity epidemic. Previously, we identified homeobox-containing transcription factor HOXC10 as a suppressor of browning in subcutaneous WAT. Here, we provide evidence for the physiological role of HOXC10 in regulating WAT thermogenesis. Analysis of an adipose-specific HOXC10 knockout mouse line with no detectable HOXC10 in mature adipocytes revealed spontaneous subcutaneous WAT browning, increased expression of genes involved in browning, increased basal rectal temperature, enhanced cold tolerance, and improved glucose homeostasis. These phenotypes were further exacerbated by exposure to cold or a β-adrenergic stimulant. Mechanistically, cold and β-adrenergic exposure led to reduced HOXC10 protein level without affecting its mRNA level. Cold exposure induced cAMP-dependent protein kinase–dependent proteasome-mediated degradation of HOXC10 in cultured adipocytes, and shotgun proteomics approach identified KCTD2, 5, and 17 as potential E3 ligases regulating HOXC10 proteasomal degradation. Collectively, these data demonstrate that HOXC10 is a gatekeeper of WAT identity, and targeting HOXC10 could be a plausible therapeutic strategy to unlock WAT thermogenic potentials.
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spelling pubmed-83856162021-09-09 HOXC10 Suppresses Browning to Maintain White Adipocyte Identity Tan, H.Y. Angeline Sim, M.F. Michelle Tan, Shi-Xiong Ng, Yvonne Gan, Sin Yee Li, Hongyu Neo, Suat Peng Gunaratne, Jayantha Xu, Feng Han, Weiping Diabetes Metabolism Promoting beige adipocyte development within white adipose tissue (WAT) is a potential therapeutic approach to staunch the current obesity epidemic. Previously, we identified homeobox-containing transcription factor HOXC10 as a suppressor of browning in subcutaneous WAT. Here, we provide evidence for the physiological role of HOXC10 in regulating WAT thermogenesis. Analysis of an adipose-specific HOXC10 knockout mouse line with no detectable HOXC10 in mature adipocytes revealed spontaneous subcutaneous WAT browning, increased expression of genes involved in browning, increased basal rectal temperature, enhanced cold tolerance, and improved glucose homeostasis. These phenotypes were further exacerbated by exposure to cold or a β-adrenergic stimulant. Mechanistically, cold and β-adrenergic exposure led to reduced HOXC10 protein level without affecting its mRNA level. Cold exposure induced cAMP-dependent protein kinase–dependent proteasome-mediated degradation of HOXC10 in cultured adipocytes, and shotgun proteomics approach identified KCTD2, 5, and 17 as potential E3 ligases regulating HOXC10 proteasomal degradation. Collectively, these data demonstrate that HOXC10 is a gatekeeper of WAT identity, and targeting HOXC10 could be a plausible therapeutic strategy to unlock WAT thermogenic potentials. American Diabetes Association 2021-08 2021-05-14 /pmc/articles/PMC8385616/ /pubmed/33990396 http://dx.doi.org/10.2337/db21-0114 Text en © 2021 by the American Diabetes Association https://www.diabetesjournals.org/content/licenseReaders may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. More information is available at https://www.diabetesjournals.org/content/license.
spellingShingle Metabolism
Tan, H.Y. Angeline
Sim, M.F. Michelle
Tan, Shi-Xiong
Ng, Yvonne
Gan, Sin Yee
Li, Hongyu
Neo, Suat Peng
Gunaratne, Jayantha
Xu, Feng
Han, Weiping
HOXC10 Suppresses Browning to Maintain White Adipocyte Identity
title HOXC10 Suppresses Browning to Maintain White Adipocyte Identity
title_full HOXC10 Suppresses Browning to Maintain White Adipocyte Identity
title_fullStr HOXC10 Suppresses Browning to Maintain White Adipocyte Identity
title_full_unstemmed HOXC10 Suppresses Browning to Maintain White Adipocyte Identity
title_short HOXC10 Suppresses Browning to Maintain White Adipocyte Identity
title_sort hoxc10 suppresses browning to maintain white adipocyte identity
topic Metabolism
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8385616/
https://www.ncbi.nlm.nih.gov/pubmed/33990396
http://dx.doi.org/10.2337/db21-0114
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