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Overexpression of miR-155 in the Liver of Transgenic Mice Alters the Expression Profiling of Hepatic Genes Associated with Lipid Metabolism

机译:miR-155在转基因小鼠肝脏中的过表达改变与脂质代谢相关的肝基因的表达谱

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摘要

Hepatic expression profiling has revealed miRNA changes in liver diseases, while hepatic miR-155 expression was increased in murine non-alcoholic fatty liver disease, suggesting that miR-155 might regulate the biological process of lipid metabolism. To illustrate the effects of miR-155 gain of function in transgenic mouse liver on lipid metabolism, transgenic mice (i.e., Rm155LG mice) for the conditional overexpression of mouse miR-155 transgene mediated by Cre/lox P system were firstly generated around the world in this study. Rm155LG mice were further crossed to Alb-Cre mice to realize the liver-specific overexpression of miR-155 transgene in Rm155LG/Alb-Cre double transgenic mice which showed the unaltered body weight, liver weight, epididymal fat pad weight and gross morphology and appearance of liver. Furthermore, liver-specific overexpression of miR-155 transgene resulted in significantly reduced levels of serum total cholesterol, triglycerides (TG) and high-density lipoprotein (HDL), as well as remarkably decreased contents of hepatic lipid, TG, HDL and free fatty acid in Rm155LG/Alb-Cre transgenic mice. More importantly, microarray data revealed a general downward trend in the expression profile of hepatic genes with functions typically associated with fatty acid, cholesterol and triglyceride metabolism, which is likely at least partially responsible for serum cholesterol and triglyceride lowering observed in Rm155LG/Alb-Cre mice. In this study, we demonstrated that hepatic overexpression of miR-155 alleviated nonalcoholic fatty liver induced by a high-fat diet. Additionally, carboxylesterase 3/triacylglycerol hydrolase (Ces3/TGH) was identified as a direct miR-155 target gene that is potentially responsible for the partial liver phenotypes observed in Rm155LG/Alb-Cre mice. Taken together, these data from miR-155 gain of function study suggest, for what we believe is the first time, the altered lipid metabolism and provide new insights into the metabolic state of the liver in Rm155LG/Alb-Cre mice.
机译:肝脏表达谱分析揭示了肝脏疾病中的miRNA变化,而在小鼠非酒精性脂肪肝疾病中肝脏miR-155表达增加,表明miR-155可能调节脂质代谢的生物学过程。为了说明转基因小鼠肝脏中miR-155功能获得对脂质代谢的影响,由Cre / lox P系统介导的小鼠miR-155转基因有条件过表达的转基因小鼠(即Rm155LG小鼠)首先在世界范围内产生。在这个研究中。 Rm155LG小鼠进一步与Alb-Cre小鼠杂交,以实现Rm155LG / Alb-Cre双转基因小鼠中肝脏特异性miR-155转基因的过表达,其体重,肝脏重量,附睾脂肪垫重量以及总体形态和外观均未改变肝。此外,miR-155转基因的肝脏特异性过表达导致血清总胆固醇,甘油三酸酯(TG)和高密度脂蛋白(HDL)的水平显着降低,以及肝脂质,TG,HDL和游离脂肪的含量显着降低Rm155LG / Alb-Cre转基因小鼠体内的氨基酸。更重要的是,微阵列数据揭示了具有通常与脂肪酸,胆固醇和甘油三酸酯代谢相关的功能的肝基因表达谱中的总体下降趋势,这可能至少部分是导致Rm155LG / Alb-Cre中血清胆固醇和甘油三酯降低的部分原因老鼠。在这项研究中,我们证明了miR-155的肝过表达减轻了高脂饮食诱导的非酒精性脂肪肝。此外,羧酸酯酶3 /三酰基甘油水解酶(Ces3 / TGH)被确定为直接的miR-155靶基因,可能对Rm155LG / Alb-Cre小鼠中观察到的部分肝脏表型负责。总的来说,来自miR-155功能获得研究的这些数据表明,我们相信这是脂代谢的首次改变,并为Rm155LG / Alb-Cre小鼠肝脏的代谢状态提供了新的见解。

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