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Linc-smad7 promotes myoblast differentiation and muscle regeneration via sponging miR-125b

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posted on 2018-06-18, 18:52 authored by Chengchuang Song, Jian Wang, Yilei Ma, Zhaoxin Yang, Dong Dong, Hui Li, Jiameng Yang, Yongzhen Huang, Martin Plath, Yun Ma, Hong Chen

Long noncoding RNAs (lncRNAs) are involved in the regulation of skeletal muscle development. In the present study, differentially expressed lncRNAs were identified from RNA-seq data derived from myoblasts and myotubes. We conducted studies to elucidate the function and molecular mechanism of action of Linc-smad7 during skeletal muscle development. Our findings show that Linc-smad7 is upregulated during the early phase of myoblasts differentiation. In in vitro studies, we showed that overexpression of Linc-smad7 promoted the arrest of myoblasts in G1 phase, inhibited DNA replication, and induced myoblast differentiation. Our in vivo studies suggest that Linc-smad7 stimulates skeletal muscle regeneration in cardiotoxin-induced muscle injury. Mechanistically, Linc-smad7 overexpression increased smad7 and IGF2 protein levels. On the contrary, overexpression of miR-125b reduced smad7 and IGF2 protein levels. Results of RNA immunoprecipitation analysis and biotin-labeled miR-125b capture suggest that Linc-smad7 could act as a competing endogenous RNA (ceRNA) for miRNA-125b. Taken together, our findings suggest that the novel noncoding regulator Linc-smad7 regulates skeletal muscle development.

Funding

This work was supported by the National Natural Science Foundation of China [31772574];Special Fund of Xinyang Normal University [2017001];Program of National Beef Cattle and Yak Industrial Technology System [CARS-38].

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