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骨骼肌衍生的外泌体 miR-146a-5p 通过介导肌肉-脂肪轴和靶向 GDF5-PPARγ 信号抑制脂肪生成。

Skeletal Muscle-Derived Exosomal miR-146a-5p Inhibits Adipogenesis by Mediating Muscle-Fat Axis and Targeting GDF5-PPARγ Signaling.

机构信息

Guangdong Provincial Key Laboratory of Animal Nutrition Control, State Key Laboratory of Livestock and Poultry Breeding, National Engineering Research Center for Breeding Swine Industry, College of Animal Science, South China Agricultural University, No. 483 Wushan Road, Guangzhou 510642, China.

Jiangxi Province Key Laboratory of Animal Nutrition, College of Animal Science and Technology, Jiangxi Agricultural University, Nanchang 330045, China.

出版信息

Int J Mol Sci. 2023 Feb 25;24(5):4561. doi: 10.3390/ijms24054561.

Abstract

Skeletal muscle-fat interaction is essential for maintaining organismal energy homeostasis and managing obesity by secreting cytokines and exosomes, but the role of the latter as a new mediator in inter-tissue communication remains unclear. Recently, we discovered that miR-146a-5p was mainly enriched in skeletal muscle-derived exosomes (SKM-Exos), 50-fold higher than in fat exosomes. Here, we investigated the role of skeletal muscle-derived exosomes regulating lipid metabolism in adipose tissue by delivering miR-146a-5p. The results showed that skeletal muscle cell-derived exosomes significantly inhibited the differentiation of preadipocytes and their adipogenesis. When the skeletal muscle-derived exosomes co-treated adipocytes with miR-146a-5p inhibitor, this inhibition was reversed. Additionally, skeletal muscle-specific knockout miR-146a-5p (mKO) mice significantly increased body weight gain and decreased oxidative metabolism. On the other hand, the internalization of this miRNA into the mKO mice by injecting skeletal muscle-derived exosomes from the Flox mice (Flox-Exos) resulted in significant phenotypic reversion, including down-regulation of genes and proteins involved in adipogenesis. Mechanistically, miR-146a-5p has also been demonstrated to function as a negative regulator of peroxisome proliferator-activated receptor γ (PPARγ) signaling by directly targeting growth and differentiation factor 5 (GDF5) gene to mediate adipogenesis and fatty acid absorption. Taken together, these data provide new insights into the role of miR-146a-5p as a novel myokine involved in the regulation of adipogenesis and obesity via mediating the skeletal muscle-fat signaling axis, which may serve as a target for the development of therapies against metabolic diseases, such as obesity.

摘要

骨骼肌-脂肪相互作用对于维持机体能量稳态和通过分泌细胞因子和外泌体来管理肥胖至关重要,但后者作为组织间通讯的新介质的作用尚不清楚。最近,我们发现 miR-146a-5p 主要富集在骨骼肌来源的外泌体(SKM-Exos)中,是脂肪外泌体的 50 倍。在这里,我们通过递送 miR-146a-5p 研究了骨骼肌来源的外泌体调节脂肪组织脂质代谢的作用。结果表明,骨骼肌细胞来源的外泌体显著抑制前体脂肪细胞的分化及其脂肪生成。当骨骼肌来源的外泌体与 miR-146a-5p 抑制剂共同处理脂肪细胞时,这种抑制作用被逆转。此外,骨骼肌特异性敲除 miR-146a-5p(mKO)小鼠显著增加体重增加并降低氧化代谢。另一方面,通过注射来自 Flox 小鼠(Flox-Exos)的骨骼肌来源的外泌体将这种 miRNA 内化到 mKO 小鼠中,导致显著的表型逆转,包括参与脂肪生成的基因和蛋白质的下调。从机制上讲,miR-146a-5p 还被证明通过直接靶向生长分化因子 5(GDF5)基因作为过氧化物酶体增殖物激活受体 γ(PPARγ)信号的负调节剂来调节脂肪生成和脂肪酸吸收。总之,这些数据提供了新的见解,即 miR-146a-5p 作为一种新型肌因子,通过调节骨骼肌-脂肪信号轴参与脂肪生成和肥胖的调节,可能成为治疗代谢疾病(如肥胖)的新靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/270e/10003660/45ab0e6394dd/ijms-24-04561-g001.jpg

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