MyoD公司
小RNA
调节器
生物
肌球蛋白
细胞生物学
皮特x2
基因表达
基因
心肌细胞
肌发生
遗传学
同源盒
作者
Lijun Chen,Ping Wu,Xiufang Guo,Yixin Hu,Y.-L. Li,Jia Shi,K.-Z. Wang,Wuying Chu,J.-S. Zhang
标识
DOI:10.2174/1566524014666140228100250
摘要
The fast and slow skeletal muscle fibers in fish are separated to a much greater degree than in mammals. MyoD is required for the maintenance of normal fiber type balance in muscles. So far, the upstream regulatory factors of MyoD in terms of controlling muscle phenotype are poorly understood. In the present study, we used Siniperca chuatsi as a model system and demonstrated that miR-143 expression was negatively correlated with MyoD expression in the fast and slow muscles of S. chuatsi. The luciferase reporter assay further verified the direct interaction between the miR-143 and MyoD. The miR-143 suppression also led to the significant increase in MyoD and fast myosin heavy chain gene expression in vivo. Taken together, our studies indicated that miRNA participates in controlling the performance of different muscle fiber types in vertebrates.
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