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The muscle-enriched myokine Musclin impairs beige fat thermogenesis and systemic energy homeostasis via Tfr1/PKA signaling in male mice

Skeletal muscle and thermogenic adipose tissue are both critical for the maintenance of body temperature in mammals. However, whether these two tissues are interconnected to modulate thermogenesis and metabolic homeostasis in response to thermal stress remains inconclusive. Here, we report that huma...

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Autores principales: Jin, Lu, Han, Shuang, Lv, Xue, Li, Xiaofei, Zhang, Ziyin, Kuang, Henry, Chen, Zhimin, Lv, Cheng-an, Peng, Wei, Yang, Zhuoying, Yang, Miqi, Mi, Lin, Liu, Tongyu, Ma, Shengshan, Qiu, Xinyuan, Wang, Qintao, Pan, Xiaowen, Shan, Pengfei, Feng, Yu, Li, Jin, Wang, Fudi, Xie, Liwei, Zhao, Xuyun, Fu, Jun-Fen, Lin, Jiandie D., Meng, Zhuo-Xian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10356794/
https://www.ncbi.nlm.nih.gov/pubmed/37468484
http://dx.doi.org/10.1038/s41467-023-39710-z
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author Jin, Lu
Han, Shuang
Lv, Xue
Li, Xiaofei
Zhang, Ziyin
Kuang, Henry
Chen, Zhimin
Lv, Cheng-an
Peng, Wei
Yang, Zhuoying
Yang, Miqi
Mi, Lin
Liu, Tongyu
Ma, Shengshan
Qiu, Xinyuan
Wang, Qintao
Pan, Xiaowen
Shan, Pengfei
Feng, Yu
Li, Jin
Wang, Fudi
Xie, Liwei
Zhao, Xuyun
Fu, Jun-Fen
Lin, Jiandie D.
Meng, Zhuo-Xian
author_facet Jin, Lu
Han, Shuang
Lv, Xue
Li, Xiaofei
Zhang, Ziyin
Kuang, Henry
Chen, Zhimin
Lv, Cheng-an
Peng, Wei
Yang, Zhuoying
Yang, Miqi
Mi, Lin
Liu, Tongyu
Ma, Shengshan
Qiu, Xinyuan
Wang, Qintao
Pan, Xiaowen
Shan, Pengfei
Feng, Yu
Li, Jin
Wang, Fudi
Xie, Liwei
Zhao, Xuyun
Fu, Jun-Fen
Lin, Jiandie D.
Meng, Zhuo-Xian
author_sort Jin, Lu
collection PubMed
description Skeletal muscle and thermogenic adipose tissue are both critical for the maintenance of body temperature in mammals. However, whether these two tissues are interconnected to modulate thermogenesis and metabolic homeostasis in response to thermal stress remains inconclusive. Here, we report that human and mouse obesity is associated with elevated Musclin levels in both muscle and circulation. Intriguingly, muscle expression of Musclin is markedly increased or decreased when the male mice are housed in thermoneutral or chronic cool conditions, respectively. Beige fat is then identified as the primary site of Musclin action. Muscle-transgenic or AAV-mediated overexpression of Musclin attenuates beige fat thermogenesis, thereby exacerbating diet-induced obesity and metabolic disorders in male mice. Conversely, Musclin inactivation by muscle-specific ablation or neutralizing antibody treatment promotes beige fat thermogenesis and improves metabolic homeostasis in male mice. Mechanistically, Musclin binds to transferrin receptor 1 (Tfr1) and antagonizes Tfr1-mediated cAMP/PKA-dependent thermogenic induction in beige adipocytes. This work defines the temperature-sensitive myokine Musclin as a negative regulator of adipose thermogenesis that exacerbates the deterioration of metabolic health in obese male mice and thus provides a framework for the therapeutic targeting of this endocrine pathway.
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spelling pubmed-103567942023-07-21 The muscle-enriched myokine Musclin impairs beige fat thermogenesis and systemic energy homeostasis via Tfr1/PKA signaling in male mice Jin, Lu Han, Shuang Lv, Xue Li, Xiaofei Zhang, Ziyin Kuang, Henry Chen, Zhimin Lv, Cheng-an Peng, Wei Yang, Zhuoying Yang, Miqi Mi, Lin Liu, Tongyu Ma, Shengshan Qiu, Xinyuan Wang, Qintao Pan, Xiaowen Shan, Pengfei Feng, Yu Li, Jin Wang, Fudi Xie, Liwei Zhao, Xuyun Fu, Jun-Fen Lin, Jiandie D. Meng, Zhuo-Xian Nat Commun Article Skeletal muscle and thermogenic adipose tissue are both critical for the maintenance of body temperature in mammals. However, whether these two tissues are interconnected to modulate thermogenesis and metabolic homeostasis in response to thermal stress remains inconclusive. Here, we report that human and mouse obesity is associated with elevated Musclin levels in both muscle and circulation. Intriguingly, muscle expression of Musclin is markedly increased or decreased when the male mice are housed in thermoneutral or chronic cool conditions, respectively. Beige fat is then identified as the primary site of Musclin action. Muscle-transgenic or AAV-mediated overexpression of Musclin attenuates beige fat thermogenesis, thereby exacerbating diet-induced obesity and metabolic disorders in male mice. Conversely, Musclin inactivation by muscle-specific ablation or neutralizing antibody treatment promotes beige fat thermogenesis and improves metabolic homeostasis in male mice. Mechanistically, Musclin binds to transferrin receptor 1 (Tfr1) and antagonizes Tfr1-mediated cAMP/PKA-dependent thermogenic induction in beige adipocytes. This work defines the temperature-sensitive myokine Musclin as a negative regulator of adipose thermogenesis that exacerbates the deterioration of metabolic health in obese male mice and thus provides a framework for the therapeutic targeting of this endocrine pathway. Nature Publishing Group UK 2023-07-19 /pmc/articles/PMC10356794/ /pubmed/37468484 http://dx.doi.org/10.1038/s41467-023-39710-z Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Jin, Lu
Han, Shuang
Lv, Xue
Li, Xiaofei
Zhang, Ziyin
Kuang, Henry
Chen, Zhimin
Lv, Cheng-an
Peng, Wei
Yang, Zhuoying
Yang, Miqi
Mi, Lin
Liu, Tongyu
Ma, Shengshan
Qiu, Xinyuan
Wang, Qintao
Pan, Xiaowen
Shan, Pengfei
Feng, Yu
Li, Jin
Wang, Fudi
Xie, Liwei
Zhao, Xuyun
Fu, Jun-Fen
Lin, Jiandie D.
Meng, Zhuo-Xian
The muscle-enriched myokine Musclin impairs beige fat thermogenesis and systemic energy homeostasis via Tfr1/PKA signaling in male mice
title The muscle-enriched myokine Musclin impairs beige fat thermogenesis and systemic energy homeostasis via Tfr1/PKA signaling in male mice
title_full The muscle-enriched myokine Musclin impairs beige fat thermogenesis and systemic energy homeostasis via Tfr1/PKA signaling in male mice
title_fullStr The muscle-enriched myokine Musclin impairs beige fat thermogenesis and systemic energy homeostasis via Tfr1/PKA signaling in male mice
title_full_unstemmed The muscle-enriched myokine Musclin impairs beige fat thermogenesis and systemic energy homeostasis via Tfr1/PKA signaling in male mice
title_short The muscle-enriched myokine Musclin impairs beige fat thermogenesis and systemic energy homeostasis via Tfr1/PKA signaling in male mice
title_sort muscle-enriched myokine musclin impairs beige fat thermogenesis and systemic energy homeostasis via tfr1/pka signaling in male mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10356794/
https://www.ncbi.nlm.nih.gov/pubmed/37468484
http://dx.doi.org/10.1038/s41467-023-39710-z
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