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游离脂肪酸、microRNA122 和甘油三酯合成在肝组织和肌肉组织中的代谢途径。

Metabolic Circuit Involving Free Fatty Acids, microRNA 122, and Triglyceride Synthesis in Liver and Muscle Tissues.

机构信息

The Goldyne Savad Institute of Gene and Cell Therapy, Hadassah Hebrew University Hospital, Ein Karem, Jerusalem, Israel.

Department of Cardiology, Hadassah Hebrew University Hospital, Ein Karem, Jerusalem, Israel.

出版信息

Gastroenterology. 2017 Nov;153(5):1404-1415. doi: 10.1053/j.gastro.2017.08.013. Epub 2017 Aug 9.

Abstract

BACKGROUND & AIMS: Effective treatments are needed for hepatic steatosis characterized by accumulation of triglycerides in hepatocytes, which leads to hepatocellular carcinoma. MicroRNA 122 (MIR122) is expressed only in the liver, where it regulates lipid metabolism. We investigated the mechanism by which free fatty acids (FFAs) regulate MIR122 expression and the effect of MIR122 on triglyceride synthesis.

METHODS

We analyzed MIR122 promoter activity and validated its target mRNAs by transfection of Luciferase reporter plasmids into Huh7, BNL-1ME, and HEK293 cultured cell lines. We measured levels of microRNAs and mRNAs by quantitative real-time PCR analysis of RNA extracted from plasma, liver, muscle, and adipose tissues of C57BL/6 mice given the FFA-inducer CL316243. MIR122 was inhibited using an inhibitor of MIR122. Metabolic profiles of mice were determined using metabolic chambers and by histologic analyses of liver tissues. We performed RNA sequence analyses to identify metabolic pathways involving MIR122.

RESULTS

We validated human Agpat1 and Dgat1 mRNAs, involved in triglyceride synthesis, as targets of MIR122. FFAs increased MIR122 expression in livers of mice by activating the retinoic acid-related orphan receptor alpha, and induced secretion of MIR122 from liver to blood. Circulating MIR122 entered muscle and adipose tissues of mice, reducing mRNA levels of genes involved in triglyceride synthesis. Mice injected with an inhibitor of MIR122 and then given CL316243, accumulated triglycerides in liver and muscle tissues, and had reduced rates of β-oxidation. There was a positive correlation between level of FFAs and level of MIR122 in plasma samples from 6 healthy individuals, collected before and during fasting.

CONCLUSIONS

In biochemical and histologic studies of plasma, liver, muscle, and adipose tissues from mice, we found that FFAs increase hepatic expression and secretion of MIR122, which regulates energy storage vs expenditure in liver and peripheral tissues. Strategies to reduce triglyceride levels, by increasing MIR122, might be developed for treatment of metabolic syndrome.

摘要

背景与目的

需要有效的治疗方法来治疗以肝细胞内甘油三酯积累为特征的肝脂肪变性,这会导致肝细胞癌。微小 RNA 122(MIR122)仅在肝脏中表达,在肝脏中它调节脂质代谢。我们研究了游离脂肪酸(FFAs)调节 MIR122 表达的机制以及 MIR122 对甘油三酯合成的影响。

方法

我们分析了 MIR122 启动子活性,并通过将荧光素酶报告质粒转染到 Huh7、BNL-1ME 和 HEK293 培养细胞系中来验证其靶 mRNAs。我们通过定量实时 PCR 分析从给予 FFA 诱导剂 CL316243 的 C57BL/6 小鼠的血浆、肝脏、肌肉和脂肪组织中提取的 RNA 来测量 microRNAs 和 mRNAs 的水平。我们使用代谢室和肝脏组织的组织学分析来确定 MIR122 抑制物对小鼠代谢谱的影响。我们进行了 RNA 序列分析,以确定涉及 MIR122 的代谢途径。

结果

我们验证了涉及甘油三酯合成的人 Agpat1 和 Dgat1 mRNAs 是 MIR122 的靶标。FFAs 通过激活维甲酸相关孤儿受体 α 增加了小鼠肝脏中的 MIR122 表达,并诱导 MIR122 从肝脏分泌到血液中。循环的 MIR122 进入小鼠的肌肉和脂肪组织,降低了参与甘油三酯合成的基因的 mRNA 水平。注射 MIR122 抑制剂然后给予 CL316243 的小鼠在肝脏和肌肉组织中积累甘油三酯,并且β-氧化率降低。在从 6 名健康个体收集的空腹前后的血浆样本中,FFA 水平与 MIR122 水平之间存在正相关。

结论

在对来自小鼠的血浆、肝脏、肌肉和脂肪组织的生化和组织学研究中,我们发现 FFAs 增加了 MIR122 在肝脏中的表达和分泌,这调节了肝脏和外周组织中能量储存与消耗之间的平衡。通过增加 MIR122 来降低甘油三酯水平的策略可能会被开发用于治疗代谢综合征。

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