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miR-99b-5p 下调人原代肌管中的蛋白质合成。

MicroRNA-99b-5p downregulates protein synthesis in human primary myotubes.

机构信息

Institute for Physical Activity and Nutrition, School of Exercise and Nutrition Sciences, Deakin University, Geelong, Victoria, Australia.

Department of Physiology, Anatomy and Microbiology, School of Life Sciences, La Trobe University, Melbourne, Victoria, Australia.

出版信息

Am J Physiol Cell Physiol. 2020 Aug 1;319(2):C432-C440. doi: 10.1152/ajpcell.00172.2020. Epub 2020 Jul 1.

Abstract

microRNAs (miRNAs) are important regulators of cellular homeostasis and exert their effect by directly controlling protein expression. We have previously reported an age-dependent negative association between microRNA-99b (miR-99b-5p) expression and muscle protein synthesis in human muscle in vivo. Here we investigated the role of miR-99b-5p as a potential negative regulator of protein synthesis via inhibition of mammalian target for rapamycin (MTOR) signaling in human primary myocytes. Overexpressing miR-99b-5p in human primary myotubes from young and old subjects significantly decreased protein synthesis with no effect of donor age. A binding interaction between miR-99b-5p and its putative binding site within the 3'-untranslated region (UTR) was confirmed in CC myoblasts. The observed decline in protein synthesis was, however, not associated with a suppression of the MTOR protein but of its regulatory associated protein of mTOR complex 1 (RPTOR). These results demonstrate that modulating the expression levels of a miRNA can regulate protein synthesis in human muscle cells and provide a potential mechanism for muscle wasting in vivo.

摘要

microRNAs (miRNAs) 是细胞内稳态的重要调节因子,通过直接控制蛋白质表达来发挥作用。我们之前曾报道过,miR-99b(miR-99b-5p)的表达与体内人类肌肉的蛋白质合成呈年龄依赖性负相关。在这里,我们通过抑制哺乳动物雷帕霉素靶蛋白(MTOR)信号通路来研究 miR-99b-5p 作为潜在的蛋白质合成负调节剂在人类原代肌细胞中的作用。在来自年轻和老年供体的人类原代肌管中过表达 miR-99b-5p 可显著降低蛋白质合成,而与供体年龄无关。在 CC 成肌细胞中证实了 miR-99b-5p 与其假定的结合位点之间的结合相互作用,该结合位点位于 3'非翻译区(UTR)内。然而,观察到的蛋白质合成下降与 MTOR 蛋白的抑制无关,而是与 mTOR 复合物 1(RPTOR)的调节相关蛋白的抑制有关。这些结果表明,调节 miRNA 的表达水平可以调节人类肌肉细胞中的蛋白质合成,并为体内肌肉减少提供了一种潜在的机制。

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