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Single-nucleus profiling unveils a geroprotective role of the FOXO3 in primate skeletal muscle aging

Age-dependent loss of skeletal muscle mass and function is a feature of sarcopenia, and increases the risk of many aging-related metabolic diseases. Here, we report phenotypic and single-nucleus transcriptomic analyses of non-human primate skeletal muscle aging. A higher transcriptional fluctuation...

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Autores principales: Jing, Ying, Zuo, Yuesheng, Yu, Yang, Sun, Liang, Yu, Zhengrong, Ma, Shuai, Zhao, Qian, Sun, Guoqiang, Hu, Huifang, Li, Jingyi, Huang, Daoyuan, Liu, Lixiao, Li, Jiaming, Xin, Zijuan, Huang, Haoyan, Belmonte, Juan Carlos Izpisua, Zhang, Weiqi, Wang, Si, Qu, Jing, Liu, Guang-Hui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10305740/
https://www.ncbi.nlm.nih.gov/pubmed/36921027
http://dx.doi.org/10.1093/procel/pwac061
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author Jing, Ying
Zuo, Yuesheng
Yu, Yang
Sun, Liang
Yu, Zhengrong
Ma, Shuai
Zhao, Qian
Sun, Guoqiang
Hu, Huifang
Li, Jingyi
Huang, Daoyuan
Liu, Lixiao
Li, Jiaming
Xin, Zijuan
Huang, Haoyan
Belmonte, Juan Carlos Izpisua
Zhang, Weiqi
Wang, Si
Qu, Jing
Liu, Guang-Hui
author_facet Jing, Ying
Zuo, Yuesheng
Yu, Yang
Sun, Liang
Yu, Zhengrong
Ma, Shuai
Zhao, Qian
Sun, Guoqiang
Hu, Huifang
Li, Jingyi
Huang, Daoyuan
Liu, Lixiao
Li, Jiaming
Xin, Zijuan
Huang, Haoyan
Belmonte, Juan Carlos Izpisua
Zhang, Weiqi
Wang, Si
Qu, Jing
Liu, Guang-Hui
author_sort Jing, Ying
collection PubMed
description Age-dependent loss of skeletal muscle mass and function is a feature of sarcopenia, and increases the risk of many aging-related metabolic diseases. Here, we report phenotypic and single-nucleus transcriptomic analyses of non-human primate skeletal muscle aging. A higher transcriptional fluctuation was observed in myonuclei relative to other interstitial cell types, indicating a higher susceptibility of skeletal muscle fiber to aging. We found a downregulation of FOXO3 in aged primate skeletal muscle, and identified FOXO3 as a hub transcription factor maintaining skeletal muscle homeostasis. Through the establishment of a complementary experimental pipeline based on a human pluripotent stem cell-derived myotube model, we revealed that silence of FOXO3 accelerates human myotube senescence, whereas genetic activation of endogenous FOXO3 alleviates human myotube aging. Altogether, based on a combination of monkey skeletal muscle and human myotube aging research models, we unraveled the pivotal role of the FOXO3 in safeguarding primate skeletal muscle from aging, providing a comprehensive resource for the development of clinical diagnosis and targeted therapeutic interventions against human skeletal muscle aging and the onset of sarcopenia along with aging-related disorders.
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spelling pubmed-103057402023-06-29 Single-nucleus profiling unveils a geroprotective role of the FOXO3 in primate skeletal muscle aging Jing, Ying Zuo, Yuesheng Yu, Yang Sun, Liang Yu, Zhengrong Ma, Shuai Zhao, Qian Sun, Guoqiang Hu, Huifang Li, Jingyi Huang, Daoyuan Liu, Lixiao Li, Jiaming Xin, Zijuan Huang, Haoyan Belmonte, Juan Carlos Izpisua Zhang, Weiqi Wang, Si Qu, Jing Liu, Guang-Hui Protein Cell Research Articles Age-dependent loss of skeletal muscle mass and function is a feature of sarcopenia, and increases the risk of many aging-related metabolic diseases. Here, we report phenotypic and single-nucleus transcriptomic analyses of non-human primate skeletal muscle aging. A higher transcriptional fluctuation was observed in myonuclei relative to other interstitial cell types, indicating a higher susceptibility of skeletal muscle fiber to aging. We found a downregulation of FOXO3 in aged primate skeletal muscle, and identified FOXO3 as a hub transcription factor maintaining skeletal muscle homeostasis. Through the establishment of a complementary experimental pipeline based on a human pluripotent stem cell-derived myotube model, we revealed that silence of FOXO3 accelerates human myotube senescence, whereas genetic activation of endogenous FOXO3 alleviates human myotube aging. Altogether, based on a combination of monkey skeletal muscle and human myotube aging research models, we unraveled the pivotal role of the FOXO3 in safeguarding primate skeletal muscle from aging, providing a comprehensive resource for the development of clinical diagnosis and targeted therapeutic interventions against human skeletal muscle aging and the onset of sarcopenia along with aging-related disorders. Oxford University Press 2022-11-22 /pmc/articles/PMC10305740/ /pubmed/36921027 http://dx.doi.org/10.1093/procel/pwac061 Text en ©The Author(s) 2022. Published by Oxford University Press on behalf of Higher Education Press. 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/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Jing, Ying
Zuo, Yuesheng
Yu, Yang
Sun, Liang
Yu, Zhengrong
Ma, Shuai
Zhao, Qian
Sun, Guoqiang
Hu, Huifang
Li, Jingyi
Huang, Daoyuan
Liu, Lixiao
Li, Jiaming
Xin, Zijuan
Huang, Haoyan
Belmonte, Juan Carlos Izpisua
Zhang, Weiqi
Wang, Si
Qu, Jing
Liu, Guang-Hui
Single-nucleus profiling unveils a geroprotective role of the FOXO3 in primate skeletal muscle aging
title Single-nucleus profiling unveils a geroprotective role of the FOXO3 in primate skeletal muscle aging
title_full Single-nucleus profiling unveils a geroprotective role of the FOXO3 in primate skeletal muscle aging
title_fullStr Single-nucleus profiling unveils a geroprotective role of the FOXO3 in primate skeletal muscle aging
title_full_unstemmed Single-nucleus profiling unveils a geroprotective role of the FOXO3 in primate skeletal muscle aging
title_short Single-nucleus profiling unveils a geroprotective role of the FOXO3 in primate skeletal muscle aging
title_sort single-nucleus profiling unveils a geroprotective role of the foxo3 in primate skeletal muscle aging
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10305740/
https://www.ncbi.nlm.nih.gov/pubmed/36921027
http://dx.doi.org/10.1093/procel/pwac061
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