Endurance exercise training-responsive miR-19b-3p improves skeletal muscle glucose metabolism

Skeletal muscle is a highly adaptable tissue and remodels in response to exercise training. Using short RNA sequencing, we determine the miRNA profile of skeletal muscle from healthy male volunteers before and after a 14-day aerobic exercise training regime. Among the exercise training-responsive mi...

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Veröffentlicht in:NATURE COMMUNICATIONS 2021-10, Vol.12 (1), p.5948-13, Article 5948
Hauptverfasser: Massart, Julie, Sjögren, Rasmus J. O., Egan, Brendan, Garde, Christian, Lindgren, Magnus, Gu, Weifeng, Ferreira, Duarte M. S., Katayama, Mutsumi, Ruas, Jorge L., Barrès, Romain, O’Gorman, Donal J., Zierath, Juleen R., Krook, Anna
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Sprache:eng
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Zusammenfassung:Skeletal muscle is a highly adaptable tissue and remodels in response to exercise training. Using short RNA sequencing, we determine the miRNA profile of skeletal muscle from healthy male volunteers before and after a 14-day aerobic exercise training regime. Among the exercise training-responsive miRNAs identified, miR-19b-3p was selected for further validation. Overexpression of miR-19b-3p in human skeletal muscle cells increases insulin signaling, glucose uptake, and maximal oxygen consumption, recapitulating the adaptive response to aerobic exercise training. Overexpression of miR-19b-3p in mouse flexor digitorum brevis muscle enhances contraction-induced glucose uptake, indicating that miR-19b-3p exerts control on exercise training-induced adaptations in skeletal muscle. Potential targets of miR-19b-3p that are reduced after aerobic exercise training include KIF13A , MAPK6 , RNF11 , and VPS37A . Amongst these, RNF11 silencing potentiates glucose uptake in human skeletal muscle cells. Collectively, we identify miR-19b-3p as an aerobic exercise training-induced miRNA that regulates skeletal muscle glucose metabolism. Exercise induces structural and functional adaptations in skeletal muscle that involve transcriptomic remodeling, including of miRNA expression. Here the authors examine the expression of miRNAs in human muscle following exercise training and investigate the functions of miR-19b-3p on glucose metabolism in cells and mouse muscle.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-021-26095-0