在非酒精性脂肪肝中,游离脂肪酸诱导的miR-22通过sirt -1介导的PGC-1α表达抑制糖异生

Ajay K. Yadav , Teja Naveen Sata , Daksh Verma , Amrendra K. Sah , Amit K. Mishra , Mrinalini , Md. Musa Hossain , Kishor Pant , Senthil K. Venugopal
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引用次数: 0

摘要

背景与目的游离脂肪酸(FFAs)是非酒精性脂肪肝进展的重要调节因子之一。FFA通过调节肝细胞中的几种细胞途径来调节肝脏的代谢状态。在此,我们阐明了miR-22在调节FFAs介导的糖异生中的作用。方法用非特异性miRNA、miR-22 premrs或抗miR-22寡核苷酸转染Huh7和WRL68细胞,转染后分别用棕榈酸、油酸和亚油酸(各300μM)孵育48和72小时。使用实时聚合酶链式反应进行miR-22的表达,并对SIRT-1、PGC-1α、PEPCK和葡萄糖-6-磷酸酶进行蛋白质印迹。三组C57BL/6小鼠(每组6只小鼠)用标准饮食、胆碱充足的l-氨基酸限定饮食或胆碱缺乏的l-氨基酸定义(CDAA)饮食喂养6、18、32或54周。测定血清中甘油三酯的含量。在组织样品中分析miR-22的表达和糖异生酶的蛋白质表达。结果转染miR-22的细胞与FFAs孵育后,SIRT-1、PGC-1α、PEPCK和葡萄糖-6-磷酸酶的表达受到抑制,miR-22的表达增加。当用抗miR-22寡核苷酸转染细胞时,这些变化被逆转。CDAA喂养的小鼠显示甘油三酯含量和miR-22表达显著增加,而CDAA喂养小鼠的SIRT-1、PGC-1α、PEPCK和葡萄糖-6-磷酸酶表达受到抑制。结论这些数据证实,FFAs通过miR-22介导的SIRT-1抑制肝细胞糖异生,进而抑制肝细胞中的PGC-1α。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Free fatty acid-induced miR-22 inhibits gluconeogenesis via SIRT-1-mediated PGC-1α expression in nonalcoholic fatty liver disease

Background and aims

Free fatty acids (FFAs) are one of the important regulators of the progression of nonalcoholic fatty liver disease. The FFAs are shown to modulate the metabolic status of the liver by modulating several cellular pathways in hepatocytes. Here, we elucidated the role of miR-22 in modulating FFAs-mediated gluconeogenesis.

Methods

Huh7 and WRL68 cells were transfected with nonspecific miRNA, miR-22 premiRs or anti-miR-22 oligos followed by incubation with palmitic acid, oleic acid, and linoleic acid (300 μM each) for 48 and 72 h after transfection. The expression of miR-22 was performed using real-time polymerase chain reaction and Western blots were performed for SIRT-1, PGC-1α, PEPCK, and glucose-6-phosphatase. Three groups of C57BL/6 mice (6 mice per group) were fed with standard diet, choline sufficient l-amino acid defined diet or choline-deficient l-amino acid defined (CDAA) diet for 6, 18, 32, or 54 weeks. Triglycerides content was measured in the serum. Expression of miR-22 and the protein expression of gluconeogenic enzymes were analyzed in the tissue samples.

Results

Incubation of miR-22-transfected cells with FFAs inhibited the expression of SIRT-1, PGC-1α, PEPCK, and glucose-6-phosphatase, while miR-22 expression was increased. These changes were reversed when the cells were transfected with anti-miR-22 oligos. CDAA-fed mice showed the significant increase in triglycerides content and miR-22 expression, while there was an inhibition of SIRT-1, PGC-1α, PEPCK, and glucose-6-phosphatase expression in CDAA-fed mice.

Conclusions

These data confirm that FFAs inhibited gluconeogenesis via miR-22-mediated inhibition of SIRT-1, which in turn inhibited PGC-1α in hepatic cells.

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