Zhang Wei Ran, Zhang Hui Na, Wang Yi Min, Dai Yang, Liu Xin Feng, Li Xin, Ding Xiang Bin, Guo Hong
College of Animal Science and Veterinary Medicine, Tianjin Agricultural University, Tianjin, 300384, China.
In Vitro Cell Dev Biol Anim. 2017 Mar;53(3):265-271. doi: 10.1007/s11626-016-0109-y. Epub 2016 Oct 31.
Development of skeletal muscle is a complicated biological process regulated by various regulation factors and signal pathways. MicroRNAs (miRNAs) are novel gene regulators that control muscle cell development. microRNA-143 (miR-143) is highly expressed in skeletal muscle, and we found that miR-143 level is significantly increased during bovine skeletal muscle satellite cells (MSCs) differentiation process through microarray analysis and qRT-PCR detection. However, the function of miR-143 in bovine muscle development remained unclear. In our work, the functions of miR-143 in bovine MSCs myogenic differentiation were investigated. We discovered that IGFBP5 is directly regulated by miR-143 using a dual-luciferase reporter assay. Overexpression of miR-143 led to decreased level of IGFBP5 protein and restrained cell proliferation and differentiation, while downregulation of miR-143 resulted in increased levels of IGFBP5 protein and restrained cell proliferation but improved differentiation. IGFBP5, an important component of IGF signaling pathway, contributes greatly to bovine muscle cell development. A mechanism that miR-143 can regulate the proliferation and differentiation of bovine MSCs through changing expression of IGFBP5 was elucidated by our study.
骨骼肌的发育是一个由多种调控因子和信号通路调节的复杂生物学过程。微小RNA(miRNA)是控制肌肉细胞发育的新型基因调控因子。微小RNA-143(miR-143)在骨骼肌中高度表达,我们通过微阵列分析和qRT-PCR检测发现,在牛骨骼肌卫星细胞(MSC)分化过程中,miR-143水平显著升高。然而,miR-143在牛肌肉发育中的功能仍不清楚。在我们的研究中,对miR-143在牛MSC成肌分化中的功能进行了研究。我们使用双荧光素酶报告基因检测发现IGFBP5直接受miR-143调控。miR-143的过表达导致IGFBP5蛋白水平降低,并抑制细胞增殖和分化,而miR-143的下调则导致IGFBP5蛋白水平升高,抑制细胞增殖但促进分化。IGFBP5是IGF信号通路的重要组成部分,对牛肌肉细胞发育有很大贡献。我们的研究阐明了miR-143通过改变IGFBP5的表达来调节牛MSC增殖和分化的机制。