Transferrin receptor 1 plays an important role in muscle development and denervation-induced muscular atrophy
Previous studies demonstrate an accumulation of transferrin and transferrin receptor 1 (TfR1) in regenerating peripheral nerves. However, the expression and function of transferrin and TfR1 in the denervated skeletal muscle remain poorly understood. In this study, a mouse model of denervation was pr...
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Wolters Kluwer Medknow Publications
2021-01-01
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doaj-38f334bf9d224c66a2be3d18ffc8f7352021-01-08T04:40:09ZengWolters Kluwer Medknow PublicationsNeural Regeneration Research1673-53742021-01-011671308131610.4103/1673-5374.301024Transferrin receptor 1 plays an important role in muscle development and denervation-induced muscular atrophyYing LiJuan-Xian ChengHai-Hong YangLi-Ping ChenFeng-Jiao LiuYan WuMing FanHai-Tao WuPrevious studies demonstrate an accumulation of transferrin and transferrin receptor 1 (TfR1) in regenerating peripheral nerves. However, the expression and function of transferrin and TfR1 in the denervated skeletal muscle remain poorly understood. In this study, a mouse model of denervation was produced by complete tear of the left brachial plexus nerve. RNA-sequencing revealed that transferrin expression in the denervated skeletal muscle was upregulated, while TfR1 expression was downregulated. We also investigated the function of TfR1 during development and in adult skeletal muscles in mice with inducible deletion or loss of TfR1. The ablation of TfR1 in skeletal muscle in early development caused severe muscular atrophy and early death. In comparison, deletion of TfR1 in adult skeletal muscles did not affect survival or glucose metabolism, but caused skeletal muscle atrophy and motor functional impairment, similar to the muscular atrophy phenotype observed after denervation. These findings suggest that TfR1 plays an important role in muscle development and denervation-induced muscular atrophy. This study was approved by the Institutional Animal Care and Use Committee of Beijing Institute of Basic Medical Sciences, China (approval No. SYXK 2017-C023) on June 1, 2018.http://www.nrronline.org/article.asp?issn=1673-5374;year=2021;volume=16;issue=7;spage=1308;epage=1316;aulast=Librachial plexus nerve; innervation; iron; motor dysfunction; muscle atrophy; signal; skeletal muscle; transferrin |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ying Li Juan-Xian Cheng Hai-Hong Yang Li-Ping Chen Feng-Jiao Liu Yan Wu Ming Fan Hai-Tao Wu |
spellingShingle |
Ying Li Juan-Xian Cheng Hai-Hong Yang Li-Ping Chen Feng-Jiao Liu Yan Wu Ming Fan Hai-Tao Wu Transferrin receptor 1 plays an important role in muscle development and denervation-induced muscular atrophy Neural Regeneration Research brachial plexus nerve; innervation; iron; motor dysfunction; muscle atrophy; signal; skeletal muscle; transferrin |
author_facet |
Ying Li Juan-Xian Cheng Hai-Hong Yang Li-Ping Chen Feng-Jiao Liu Yan Wu Ming Fan Hai-Tao Wu |
author_sort |
Ying Li |
title |
Transferrin receptor 1 plays an important role in muscle development and denervation-induced muscular atrophy |
title_short |
Transferrin receptor 1 plays an important role in muscle development and denervation-induced muscular atrophy |
title_full |
Transferrin receptor 1 plays an important role in muscle development and denervation-induced muscular atrophy |
title_fullStr |
Transferrin receptor 1 plays an important role in muscle development and denervation-induced muscular atrophy |
title_full_unstemmed |
Transferrin receptor 1 plays an important role in muscle development and denervation-induced muscular atrophy |
title_sort |
transferrin receptor 1 plays an important role in muscle development and denervation-induced muscular atrophy |
publisher |
Wolters Kluwer Medknow Publications |
series |
Neural Regeneration Research |
issn |
1673-5374 |
publishDate |
2021-01-01 |
description |
Previous studies demonstrate an accumulation of transferrin and transferrin receptor 1 (TfR1) in regenerating peripheral nerves. However, the expression and function of transferrin and TfR1 in the denervated skeletal muscle remain poorly understood. In this study, a mouse model of denervation was produced by complete tear of the left brachial plexus nerve. RNA-sequencing revealed that transferrin expression in the denervated skeletal muscle was upregulated, while TfR1 expression was downregulated. We also investigated the function of TfR1 during development and in adult skeletal muscles in mice with inducible deletion or loss of TfR1. The ablation of TfR1 in skeletal muscle in early development caused severe muscular atrophy and early death. In comparison, deletion of TfR1 in adult skeletal muscles did not affect survival or glucose metabolism, but caused skeletal muscle atrophy and motor functional impairment, similar to the muscular atrophy phenotype observed after denervation. These findings suggest that TfR1 plays an important role in muscle development and denervation-induced muscular atrophy. This study was approved by the Institutional Animal Care and Use Committee of Beijing Institute of Basic Medical Sciences, China (approval No. SYXK 2017-C023) on June 1, 2018. |
topic |
brachial plexus nerve; innervation; iron; motor dysfunction; muscle atrophy; signal; skeletal muscle; transferrin |
url |
http://www.nrronline.org/article.asp?issn=1673-5374;year=2021;volume=16;issue=7;spage=1308;epage=1316;aulast=Li |
work_keys_str_mv |
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