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LncRNAH19 improves insulin resistance in skeletal muscle by regulating heterogeneous nuclear ribonucleoprotein A1

机译:通过调节异质核核糖核蛋白A1,LNCRNAH19通过调节异质核核糖蛋白A1改善骨骼肌中的胰岛素抵抗力

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Skeletal muscle is essential for glucose and lipid metabolism. Growing evidence reveals the importance of long non-coding RNAs (LncRNAs) in metabolism. This study aimed to investigate the function of LncRNA H19 (H19) in lipid metabolism of skeletal muscle and its potential mechanisms. Glucose tolerance, serum insulin and lipid content in serum and skeletal muscle were determined in control and H19-overexpressed db/db mice. Lipid metabolism was evaluated in H19-overexpressed or H19-silencing muscle cells by detecting lipid contents and mitochondria related functions. The underlying mechanisms were explored by RNA pull-down, mass spectrometry and RNA immunoprecipitation (RIP). H19 was downregulated in skeletal muscle of db/db mice. H19 overexpression in db/db mice inhibited lipid ectopic deposition in skeletal muscle, meanwhile improved glucose intolerance and insulin resistance as compared with control db/db mice treated with ad-GFP. Furthermore, overexpression of H19 reversed FFA-induced lipid accumulation and increased cellular respiration in muscle cells, while H19 knockdown exhibited opposite effects in muscle cells. Mechanistically, H19 interacted with heterogeneous nuclear ribonucleoprotein (hnRNPA1) which was validated by RNA pulldown and RIP analysis, which increased translation of fatty acid oxidation closely related genes PGC1a and CPT1b. Our data suggest that overexpression of H19 ameliorates insulin resistance by reducing ectopic lipid accumulation in skeletal muscle. The possible underlying mechanisms are that overexpression of lncRNAH19 promotes fatty acids oxidation via targeting of hnRNPA1.
机译:骨骼肌对葡萄糖和脂质代谢至关重要。日益增长的证据揭示了长期非编码RNA(LNCRNA)在新陈代谢中的重要性。本研究旨在探讨LNCRNA H19(H19)在骨骼肌脂质代谢中的功能及其潜在机制。在对照和H19-过表达的DB / DB小鼠中测定血清和骨骼肌中血清耐受性,血清胰岛素和脂质含量。通过检测脂质含量和线粒体相关功能,在H19-过表达或H19沉默肌细胞中评价脂质代谢。通过RNA下拉,质谱和RNA免疫沉淀(RIP)探索潜在机制。 H19在DB / DB小鼠的骨骼肌中下调。与用Ad-GFP处理的对照DB / DB小鼠相比,DB / DB小鼠中的H19在DB / DB小鼠中抑制脂质异位沉积,同时改善了葡萄糖不耐受和胰岛素抗性。此外,H19的过表达反转FFA诱导的脂质积累和肌肉细胞中的细胞呼吸增加,而H19敲低在肌细胞中表现出相反的影响。机械地,H19与通过RNA下拉和RIP分析验证的异质核核糖核糖蛋白(HNRNPA1)相互作用,该RIP分析增加了脂肪酸氧化密切相关基因PGC1A和CPT1B的翻译。我们的数据表明H19的过表达通过减少骨骼肌中的异位脂质积累来改善胰岛素抵抗力。可能的潜在机制是通过靶向HNRNPA1促进LNCRNAH19的过表达促进脂肪酸氧化。

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