miR-125a-5p ameliorates hepatic glycolipid metabolism disorder in type 2 diabetes mellitus through targeting of STAT3

被引:112
|
作者
Xu, Lina [1 ]
Li, Yue [1 ]
Yin, Lianhong [1 ]
Qi, Yan [1 ]
Sun, Huijun [1 ]
Sun, Pengyuan [1 ]
Xu, Ming [1 ]
Tang, Zeyao [1 ]
Peng, Jinyong [1 ]
机构
[1] Dalian Med Univ, Coll Pharm, Western 9 Lvshunnan Rd, Dalian 116044, Peoples R China
来源
THERANOSTICS | 2018年 / 8卷 / 20期
关键词
type 2 diabetes mellitus; metabolic disorder; microRNA; miR-125a-5p; STAT3; DOXORUBICIN-INDUCED CARDIOTOXICITY; INSULIN-RESISTANCE; FATTY LIVER; ENERGY-METABOLISM; GENE-EXPRESSION; MICRORNAS; SOCS3; ACTIVATION; SUPPRESSOR; GLUCONEOGENESIS;
D O I
10.7150/thno.27425
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Glycolipid metabolic disorder is an important cause for the development of type 2 diabetes mellitus (T2DM). Clarification of the molecular mechanism of metabolic disorder and exploration of drug targets are crucial for the treatment of T2DM. Methods: We examined miR-125a-5p levels in palmitic acid-induced AML12 cells and the livers of type 2 diabetic rats and mice, and then validated its target gene. Through gain- and loss-of-function studies, the effects of miR-125a-5p via targeting of STAT3 on regulating glycolipid metabolism were further illustrated in vitro and in vivo. Results: We found that miR-125a-5p was significantly decreased in the livers of diabetic mice and rats, and STAT3 was identified as the target gene of miR-125a-5p. Overexpression of miR-125a-5p in C57BL/6 mice decreased STAT3 level and downregulated the expression levels of p-STAT3 and SOCS3. Consequently, SREBP-1c-mediated lipogenesis pathway was inhibited, and PI3K/AKT pathway was activated. Moreover, silencing of miR-125a-5p significantly increased the expression levels of STAT3, p-STAT3 and SOCS3, thus activating SREBP-1c pathway and suppressing PI3K/AKT pathway. Therefore, hyperglycemia, hyperlipidemia and decreased liver glycogen appeared in C57BL/6 mice. In palmitic acid-induced AML12 cells, miR-125a-5p mimic markedly increased glucose consumption and uptake and decreased the accumulation of lipid droplets by regulating STAT3 signaling pathway. Consistently, miR-125a-5p overexpression obviously inhibited STAT3 expression in diabetic KK-Ay mice, thereby decreasing blood glucose and lipid levels, increasing hepatic glycogen content, and decreasing accumulation of hepatic lipid droplets in diabetic mice. Furthermore, inhibition of miR-125a-5p in KK-Ay mice aggravated glycolipid metabolism dysfunction through regulating STAT3. Conclusions: Our results confirmed that miR-125a-5p should be considered as a regulator of glycolipid metabolism in T2DM, which can inhibit hepatic lipogenesis and gluconeogenesis and elevate glycogen synthesis by targeting STAT3.
引用
收藏
页码:5593 / 5609
页数:17
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