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微小RNA-194调节葡萄糖代谢,且其在骨骼肌中的表达在糖尿病中降低。

MicroRNA-194 Modulates Glucose Metabolism and Its Skeletal Muscle Expression Is Reduced in Diabetes.

作者信息

Latouche Celine, Natoli Alaina, Reddy-Luthmoodoo Medini, Heywood Sarah E, Armitage James A, Kingwell Bronwyn A

机构信息

Baker IDI Heart and Diabetes Institute, Melbourne, Victoria, Australia.

School of Medicine (Optometry), Deakin University, Waurn Ponds, Victoria, Australia.

出版信息

PLoS One. 2016 May 10;11(5):e0155108. doi: 10.1371/journal.pone.0155108. eCollection 2016.

Abstract

BACKGROUND

The regulation of microRNAs (miRNAs) at different stages of the progression of type 2 diabetes mellitus (T2DM) and their role in glucose homeostasis was investigated.

METHODS

Microarrays were used to assess miRNA expression in skeletal muscle biopsies taken from healthy individuals and patients with pre-diabetes or T2DM, and insulin resistant offspring of rat dams fed a high fat diet during pregnancy.

RESULTS

Twenty-three miRNAs were differentially expressed in patients with T2DM, and 7 in the insulin resistant rat offspring compared to their controls. Among these, only one miRNA was similarly regulated: miR-194 expression was significantly reduced by 25 to 50% in both the rat model and in human with pre-diabetes and established diabetes. Knockdown of miR-194 in L6 skeletal muscle cells induced an increase in basal and insulin-stimulated glucose uptake and glycogen synthesis. This occurred in conjunction with an increased glycolysis, indicated by elevated lactate production. Moreover, oxidative capacity was also increased as we found an enhanced glucose oxidation in presence of the mitochondrial uncoupler FCCP. When miR-194 was down-regulated in vitro, western blot analysis showed an increased phosphorylation of AKT and GSK3β in response to insulin, and an increase in expression of proteins controlling mitochondrial oxidative phosphorylation.

CONCLUSIONS

Type 2 diabetes mellitus is associated with regulation of several miRNAs in skeletal muscle. Interestingly, miR-194 was a unique miRNA that appeared regulated across different stages of the disease progression, from the early stages of insulin resistance to the development of T2DM. We have shown miR-194 is involved in multiple aspects of skeletal muscle glucose metabolism from uptake, through to glycolysis, glycogenesis and glucose oxidation, potentially via mechanisms involving AKT, GSK3 and oxidative phosphorylation. MiR-194 could be down-regulated in patients with early features of diabetes as an adaptive response to facilitate tissue glucose uptake and metabolism in the face of insulin resistance.

摘要

背景

研究了2型糖尿病(T2DM)进展不同阶段微小RNA(miRNA)的调控及其在葡萄糖稳态中的作用。

方法

使用微阵列评估从健康个体、糖尿病前期或T2DM患者以及孕期高脂饮食喂养的大鼠后代的胰岛素抵抗后代获取的骨骼肌活检组织中的miRNA表达。

结果

与对照组相比,T2DM患者中有23种miRNA表达差异,胰岛素抵抗大鼠后代中有7种。其中,只有一种miRNA受到类似调控:在大鼠模型以及糖尿病前期和已确诊糖尿病的人类中,miR-194表达均显著降低25%至50%。在L6骨骼肌细胞中敲低miR-194可导致基础葡萄糖摄取和胰岛素刺激的葡萄糖摄取及糖原合成增加。这与糖酵解增加同时发生,表现为乳酸生成增加。此外,氧化能力也增加,因为我们发现在线粒体解偶联剂FCCP存在的情况下葡萄糖氧化增强。当在体外下调miR-194时,蛋白质印迹分析显示,胰岛素刺激后AKT和GSK3β的磷酸化增加,以及控制线粒体氧化磷酸化的蛋白质表达增加。

结论

2型糖尿病与骨骼肌中多种miRNA的调控有关。有趣的是,miR-194是一种独特的miRNA,在疾病进展的不同阶段,从胰岛素抵抗的早期阶段到T2DM的发展,似乎都受到调控。我们已经表明,miR-194参与骨骼肌葡萄糖代谢的多个方面,从摄取到糖酵解、糖原生成和葡萄糖氧化,可能通过涉及AKT、GSK3和氧化磷酸化的机制。在具有糖尿病早期特征的患者中,miR-194可能下调,作为一种适应性反应,以便在胰岛素抵抗的情况下促进组织葡萄糖摄取和代谢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee32/4862646/f6263d8b325f/pone.0155108.g001.jpg

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