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MicroRNA-130b attenuates dexamethasone-induced increase of lipid accumulation in porcine preadipocytes by suppressing PPAR-γ expression

机译:MicroRNA-130b通过抑制PPAR-γ表达来减轻地塞米松诱导的猪前脂肪细胞脂质蓄积的增加

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摘要

In this study, two experiments were conducted to determine the role of miR-130b in dexamethasone (DEX)-induced lipid accumulation. Porcine preadipocytes were treated with 10−6 M DEX for 48 h to investigate effects of DEX in lipid accumulation. Next, in order to illustrate the regulatory role of miR-130b on lipid accumulation induced by DEX, miRNA scrambled control (miR-SC), miR-130b overexpression plasmid and miR-130b inhibitor were respectively transfected into porcine preadipocytes at 24 h before DEX treatment for 48 h (miR-SC-DEX, miR-130b-DEX and miR-130b-inhibitor-DEX). Results showed that 10−6 M DEX significantly increased TG concentration and expression of miR-130b as well as its target gene peroxisome proliferator-activated receptor-γ (PPAR-γ). Dual-luciferase reporter assays indicated that PPAR-γ expression was negatively regulated by miR-130b, while this effect was abolished with cotransfection of miR-130b and miR-130b inhibitor. In addition, miR-130b-DEX did not change cell proliferation but significantly decreased TG concentration and PPAR-γ expression compared to miR-SC-DEX cells, while miR-130b-inhibitor-DEX cells presented opposite results. Furthermore, miR-130b-DEX significantly reduced expression of PPAR-γ downstream factor perilipin 1 as well as adipogenesis genes fatty acid synthase, acetyl coenzyme A carboxylase, 11β hydroxysteroid dehydrogenase type 1 and fat mass and obesity-associated gene, whereas expression as well as enzyme activity of adipose triglyceride lipase and hormone-sensitive lipase were greatly increased. Overall, these results clarified the role of miR-130b in DEX-induced increase of lipid accumulation in porcine preadipocytes, suggesting that miR-130b might be deemed as a novel potential therapeutic target for DEX-induced increase of lipid accumulation, and consequently provide new insights in obesity control.
机译:在这项研究中,进行了两个实验,以确定miR-130b在地塞米松(DEX)诱导的脂质蓄积中的作用。猪前脂肪细胞用10 -6 M DEX处理48 h,以研究DEX对脂质积累的影响。接下来,为了说明miR-130b对DEX诱导的脂质蓄积的调节作用,在DEX前24小时将miRNA编码对照(miR-SC),miR-130b过表达质粒和miR-130b抑制剂分别转染到猪前脂肪细胞中处理48小时(miR-SC-DEX,miR-130b-DEX和miR-130b-抑制剂-DEX)。结果表明,10 -6 M DEX显着增加了TG浓度和miR-130b及其靶基因过氧化物酶体增殖物激活受体-γ(PPAR-γ)的表达。双重荧光素酶报告基因测定表明,miR-130b负调节PPAR-γ的表达,而共转染miR-130b和miR-130b抑制剂则消除了这种作用。此外,与miR-SC-DEX细胞相比,miR-130b-DEX不会改变细胞增殖,但会显着降低TG浓度和PPAR-γ表达,而miR-130b-抑制剂-DEX细胞则呈现相反的结果。此外,miR-130b-DEX显着降低了PPAR-γ下游因子周脂肪素1以及脂肪生成基因脂肪酸合酶,乙酰辅酶A羧化酶,11β羟类固醇脱氢酶1型以及脂肪量和肥胖症相关基因的表达,而表达也是如此脂肪甘油三酯脂肪酶和激素敏感性脂肪酶的酶活性大大增加。总体而言,这些结果阐明了miR-130b在DEX诱导的猪前脂肪细胞中脂质蓄积增加中的作用,表明miR-130b可能被认为是DEX诱导的脂质蓄积增加的新型潜在治疗靶标,因此提供了新的控制肥胖的见解。

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