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Adipose-derived exosomes block muscular stem cell proliferation in aged mouse by delivering miRNA Let-7d-3p that targets transcription factor HMGA2

Sarcopenia is an aging-associated attenuation of muscular volume and strength and is the major cause of frailty and falls in elderly individuals. The number of individuals with sarcopenia is rapidly increasing worldwide; however, little is known about the underlying mechanisms of the disease. Sarcop...

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Autores principales: Itokazu, Maki, Onodera, Yuta, Mori, Tatsufumi, Inoue, Shinji, Yamagishi, Kotaro, Moritake, Akihiro, Iwawaki, Natsumi, Shigi, Kanae, Takehara, Toshiyuki, Higashimoto, Yuji, Akagi, Masao, Teramura, Takeshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9257422/
https://www.ncbi.nlm.nih.gov/pubmed/35679898
http://dx.doi.org/10.1016/j.jbc.2022.102098
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author Itokazu, Maki
Onodera, Yuta
Mori, Tatsufumi
Inoue, Shinji
Yamagishi, Kotaro
Moritake, Akihiro
Iwawaki, Natsumi
Shigi, Kanae
Takehara, Toshiyuki
Higashimoto, Yuji
Akagi, Masao
Teramura, Takeshi
author_facet Itokazu, Maki
Onodera, Yuta
Mori, Tatsufumi
Inoue, Shinji
Yamagishi, Kotaro
Moritake, Akihiro
Iwawaki, Natsumi
Shigi, Kanae
Takehara, Toshiyuki
Higashimoto, Yuji
Akagi, Masao
Teramura, Takeshi
author_sort Itokazu, Maki
collection PubMed
description Sarcopenia is an aging-associated attenuation of muscular volume and strength and is the major cause of frailty and falls in elderly individuals. The number of individuals with sarcopenia is rapidly increasing worldwide; however, little is known about the underlying mechanisms of the disease. Sarcopenia often copresents with obesity, and some patients with sarcopenia exhibit accumulation of peri-organ or intra-organ adipose tissue as ectopic fat deposition, including atrophied skeletal muscle. In this study, we showed that transplantation of the perimuscular adipose tissue (PMAT) to the hindlimb thigh muscles of young mice decreased the number of integrin α7/CD29-double positive muscular stem/progenitor cells and that the reaction was mediated by PMAT-derived exosomes. We also found that the inhibition of cell proliferation was induced by Let-7d-3p miRNA that targets HMGA2, which is an important transcription factor for stem cell self-renewal, in muscular stem/progenitor cells and the composite molecular reaction in aged adipocytes. Reduction of Let-7 miRNA repressor Lin28 A/B and activation of nuclear factor-kappa B signaling can lead to the accumulation of Let-7d-3p in the exosomes of aged PMAT. These findings suggest a novel crosstalk between adipose tissue and skeletal muscle in the development of aging-associated muscular atrophy and indicate that adipose tissue–derived miRNAs may play a key role in sarcopenia.
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spelling pubmed-92574222022-07-08 Adipose-derived exosomes block muscular stem cell proliferation in aged mouse by delivering miRNA Let-7d-3p that targets transcription factor HMGA2 Itokazu, Maki Onodera, Yuta Mori, Tatsufumi Inoue, Shinji Yamagishi, Kotaro Moritake, Akihiro Iwawaki, Natsumi Shigi, Kanae Takehara, Toshiyuki Higashimoto, Yuji Akagi, Masao Teramura, Takeshi J Biol Chem Research Article Sarcopenia is an aging-associated attenuation of muscular volume and strength and is the major cause of frailty and falls in elderly individuals. The number of individuals with sarcopenia is rapidly increasing worldwide; however, little is known about the underlying mechanisms of the disease. Sarcopenia often copresents with obesity, and some patients with sarcopenia exhibit accumulation of peri-organ or intra-organ adipose tissue as ectopic fat deposition, including atrophied skeletal muscle. In this study, we showed that transplantation of the perimuscular adipose tissue (PMAT) to the hindlimb thigh muscles of young mice decreased the number of integrin α7/CD29-double positive muscular stem/progenitor cells and that the reaction was mediated by PMAT-derived exosomes. We also found that the inhibition of cell proliferation was induced by Let-7d-3p miRNA that targets HMGA2, which is an important transcription factor for stem cell self-renewal, in muscular stem/progenitor cells and the composite molecular reaction in aged adipocytes. Reduction of Let-7 miRNA repressor Lin28 A/B and activation of nuclear factor-kappa B signaling can lead to the accumulation of Let-7d-3p in the exosomes of aged PMAT. These findings suggest a novel crosstalk between adipose tissue and skeletal muscle in the development of aging-associated muscular atrophy and indicate that adipose tissue–derived miRNAs may play a key role in sarcopenia. American Society for Biochemistry and Molecular Biology 2022-06-06 /pmc/articles/PMC9257422/ /pubmed/35679898 http://dx.doi.org/10.1016/j.jbc.2022.102098 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Itokazu, Maki
Onodera, Yuta
Mori, Tatsufumi
Inoue, Shinji
Yamagishi, Kotaro
Moritake, Akihiro
Iwawaki, Natsumi
Shigi, Kanae
Takehara, Toshiyuki
Higashimoto, Yuji
Akagi, Masao
Teramura, Takeshi
Adipose-derived exosomes block muscular stem cell proliferation in aged mouse by delivering miRNA Let-7d-3p that targets transcription factor HMGA2
title Adipose-derived exosomes block muscular stem cell proliferation in aged mouse by delivering miRNA Let-7d-3p that targets transcription factor HMGA2
title_full Adipose-derived exosomes block muscular stem cell proliferation in aged mouse by delivering miRNA Let-7d-3p that targets transcription factor HMGA2
title_fullStr Adipose-derived exosomes block muscular stem cell proliferation in aged mouse by delivering miRNA Let-7d-3p that targets transcription factor HMGA2
title_full_unstemmed Adipose-derived exosomes block muscular stem cell proliferation in aged mouse by delivering miRNA Let-7d-3p that targets transcription factor HMGA2
title_short Adipose-derived exosomes block muscular stem cell proliferation in aged mouse by delivering miRNA Let-7d-3p that targets transcription factor HMGA2
title_sort adipose-derived exosomes block muscular stem cell proliferation in aged mouse by delivering mirna let-7d-3p that targets transcription factor hmga2
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9257422/
https://www.ncbi.nlm.nih.gov/pubmed/35679898
http://dx.doi.org/10.1016/j.jbc.2022.102098
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