Huang Xiaozhong, Xie Hui, Xue Guanhua, Ye Meng, Zhang Lan
Department of Vascular Surgery, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, China (mainland).
Med Sci Monit. 2017 Feb 23;23:975-983. doi: 10.12659/msm.899443.
BACKGROUND Vascular complications are a major concern for patients with diabetes. Endothelial cells (ECs) play a key role in vascular function. MicroRNAs (miRNAs) have been shown to play an important role in mediating EC function; miRNAs are vulnerable to hyperglycemic conditions. Previous reports verified that Fas apoptotic inhibitory molecule 2 (FAIM2) can inhibit cell apoptosis through repressing the FAS-associated death domain protein (FADD) pathway. This current study was designed to explore the potential involvement of miR-3202 in the pathogenesis of ECs in high-glucose conditions. MATERIAL AND METHODS The aim of this study was to investigate the role of miR-3202 in regulating hyperglycemia-induced ECs by targeting FAIM2. The endothelial cell line H5V was cultured in a high-glucose condition to induce damage to FAIM2 expression in ECs; mimic and inhibition of miR-3202 were used to enhance and depress miR-3202's function to explore its function on FAIM2. RESULTS Our study showed that FAIM2 was inhibited by high-glucose conditions, and miRNA-3202 was induced by high-glucose conditions. FAIM2 was identified as the target gene of miRNA-3202; luciferase reporter assays confirmed that FAIM2 was downregulated by miR-3202 directly, that is, miR-3202 can upregulate Fas/FADD through inhibiting FAIM2. CONCLUSIONS MiR-3202 can promote EC apoptosis in hyperglycemic conditions, which demonstrated that EC apoptosis induced by high-glucose conditions partly depends on miR-3202 targeting FAIM2.
背景 血管并发症是糖尿病患者的主要担忧。内皮细胞(ECs)在血管功能中起关键作用。微小RNA(miRNAs)已被证明在介导内皮细胞功能中起重要作用;微小RNA易受高血糖条件影响。先前的报告证实,Fas凋亡抑制分子2(FAIM2)可通过抑制FAS相关死亡结构域蛋白(FADD)途径来抑制细胞凋亡。本研究旨在探讨miR - 3202在高糖条件下内皮细胞发病机制中的潜在作用。
材料与方法 本研究的目的是通过靶向FAIM2来研究miR - 3202在调节高血糖诱导的内皮细胞中的作用。将内皮细胞系H5V在高糖条件下培养以诱导内皮细胞中FAIM2表达受损;使用miR - 3202模拟物和抑制剂来增强和抑制miR - 3202的功能,以探索其对FAIM2的作用。
结果 我们的研究表明,高糖条件可抑制FAIM2,高糖条件可诱导miRNA - 3202。FAIM2被鉴定为miRNA - 3202的靶基因;荧光素酶报告基因检测证实miR - 3202可直接下调FAIM2,即miR - 3202可通过抑制FAIM2上调Fas/FADD。
结论 miR - 3202可在高血糖条件下促进内皮细胞凋亡,这表明高糖条件诱导的内皮细胞凋亡部分依赖于miR - 3202靶向FAIM2。