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FTO通过正向调节mTOR-PGC-1α通路介导的线粒体生物合成,在肌生成过程中发挥作用。

FTO is required for myogenesis by positively regulating mTOR-PGC-1α pathway-mediated mitochondria biogenesis.

作者信息

Wang Xiaobo, Huang Ning, Yang Min, Wei Dandan, Tai Haoran, Han Xiaojuan, Gong Hui, Zhou Jiao, Qin Jianqiong, Wei Xiawei, Chen Honghan, Fang Tingting, Xiao Hengyi

机构信息

Lab for Aging Research, Center of Gerontology and Geriatrics, State Key Laboratory of Biotherapy, West China Hospital, Sichuan University and Collaborative Innovation Center, Chengdu 610041, China.

出版信息

Cell Death Dis. 2017 Mar 23;8(3):e2702. doi: 10.1038/cddis.2017.122.

Abstract

Global germ line loss of fat mass- and obesity-associated (FTO) gene results in both the reduction of fat mass and lean mass in mice. The role of FTO in adipogenesis has been proposed, however, that in myogenesis has not. Skeletal muscle is the main component of body lean mass, so its connection with FTO physiologic significance need to be clarified. Here, we assessed the impact of FTO on murine skeletal muscle differentiation by in vitro and in vivo experiments. We found that FTO expression increased during myoblasts differentiation, while the silence of FTO inhibited the differentiation; in addition, skeletal muscle development was impaired in skeletal muscle FTO-deficient mice. Significantly, FTO-promoted myogenic differentiation was dependent on its m6A demethylase activity. Mechanically, we found that FTO downregulation suppressed mitochondria biogenesis and energy production, showing as the decreased mitochondria mass and mitochondrial DNA (mtDNA) content, the downregulated expression of mtDNA-encoding genes and peroxisome proliferator-activated receptor gamma coactivator 1 alpha (PGC-1α) gene, together with declined ATP level. Moreover, the involvement of mTOR-PGC-1α pathway in the connection between FTO and muscle differentiation is displayed, since the expression of FTO affected the activity of mTOR and rapamycin blocked FTO-induced PGC-1α transcription, along with the parallel alteration pattern of FTO expression and mTOR phosphorylation during myoblasts differentiation. Summarily, our findings provide the first evidence for the contribution of FTO for skeletal muscle differentiation and a new insight to study the physiologic significance of RNA methylation.

摘要

脂肪量和肥胖相关(FTO)基因的全球种系缺失导致小鼠脂肪量和瘦体重均减少。FTO在脂肪生成中的作用已被提出,然而其在肌肉生成中的作用尚未被提出。骨骼肌是身体瘦体重的主要组成部分,因此其与FTO生理意义的联系需要阐明。在此,我们通过体外和体内实验评估了FTO对小鼠骨骼肌分化的影响。我们发现FTO在成肌细胞分化过程中表达增加,而FTO的沉默抑制了分化;此外,骨骼肌FTO缺陷小鼠的骨骼肌发育受损。值得注意的是,FTO促进的肌源性分化依赖于其m6A去甲基化酶活性。机制上,我们发现FTO下调抑制线粒体生物发生和能量产生,表现为线粒体质量和线粒体DNA(mtDNA)含量降低、mtDNA编码基因和过氧化物酶体增殖物激活受体γ共激活因子1α(PGC-1α)基因的表达下调,以及ATP水平下降。此外,显示了mTOR-PGC-1α途径参与FTO与肌肉分化之间的联系,因为FTO的表达影响mTOR的活性,雷帕霉素阻断FTO诱导的PGC-1α转录,以及在成肌细胞分化过程中FTO表达和mTOR磷酸化的平行改变模式。总之,我们的发现为FTO对骨骼肌分化的贡献提供了首个证据,并为研究RNA甲基化的生理意义提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5de7/5386528/81571390d774/cddis2017122f1.jpg

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