Key Laboratory of Animal Genetics, Breeding and Reproduction of Shaanxi Province, College of Animal Sciences and Technologies, Northwest A&F University, Yangling, Shaanxi 712100, China.
Key Laboratory of Animal Genetics, Breeding and Reproduction of Shaanxi Province, College of Animal Sciences and Technologies, Northwest A&F University, Yangling, Shaanxi 712100, China
J Biol Chem. 2020 Apr 10;295(15):4937-4949. doi: 10.1074/jbc.RA119.010498. Epub 2020 Mar 9.
Mammalian skeletal muscles comprise different types of muscle fibers, and this muscle fiber heterogeneity is generally characterized by the expression of myosin heavy chain (MyHC) isoforms. A switch in MyHC expression leads to muscle fiber-type transition under various physiological and pathological conditions, but the underlying regulator coordinating the switch of MyHC expression remains largely unknown. Experiments reported in this study revealed the presence of a skeletal muscle-specific antisense transcript generated from the intergenic region between porcine MyHC IIa and IIx and is referred to here as MyHC IIA/X-AS. We found that MyHC IIA/X-AS is identified as a long noncoding RNA (lncRNA) that is strictly expressed in skeletal muscles and is predominantly distributed in the cytoplasm. Genetic analysis disclosed that MyHC IIA/X-AS stimulates cell cycle exit of skeletal satellite cells and their fusion into myotubes. Moreover, we observed that MyHC IIA/X-AS is more enriched in fast-twitch muscle and represses slow-type gene expression and thereby maintains the fast phenotype. Furthermore, we found that MyHC IIA/X-AS acts as a competing endogenous RNA that sponges microRNA-130b (miR-130b) and thereby maintains MyHC IIx expression and the fast fiber type. We also noted that miR-130b was proved to down-regulate MyHC IIx by directly targeting its 3'-UTR. Together, the results of our study uncovered a novel pathway, which revealed that lncRNA derived from the skeletal MyHC cluster could modulate local MyHC expression in , highlighting the role of lncRNAs in muscle fiber-type switching.
哺乳动物的骨骼肌包含不同类型的肌纤维,这种肌纤维异质性通常表现为肌球蛋白重链(MyHC)同工型的表达。MyHC 表达的转换导致在各种生理和病理条件下的肌肉纤维类型转换,但是协调 MyHC 表达转换的潜在调节因子在很大程度上仍然未知。本研究报告的实验揭示了存在一种从猪 MyHC IIa 和 IIx 基因间区产生的骨骼肌特异性反义转录本,在此称为 MyHC IIA/X-AS。我们发现 MyHC IIA/X-AS 被鉴定为一种长非编码 RNA(lncRNA),严格表达于骨骼肌中,并主要分布于细胞质中。遗传分析揭示了 MyHC IIA/X-AS 刺激骨骼肌卫星细胞退出细胞周期并融合为肌管。此外,我们观察到 MyHC IIA/X-AS 在快肌中更为丰富,抑制慢型基因表达,从而维持快肌表型。此外,我们发现 MyHC IIA/X-AS 作为一种竞争性内源 RNA,可吸附 microRNA-130b(miR-130b),从而维持 MyHC IIx 表达和快肌纤维类型。我们还注意到 miR-130b 通过直接靶向其 3'UTR 来下调 MyHC IIx。总之,我们的研究结果揭示了一条新的途径,表明来自骨骼肌 MyHC 簇的 lncRNA 可以调节局部 MyHC 表达,突出了 lncRNA 在肌肉纤维类型转换中的作用。