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微小 RNA-503 通过靶向 E2F3 在糖尿病肾病中导致足细胞损伤。

MicroRNA-503 contributes to podocyte injury via targeting E2F3 in diabetic nephropathy.

机构信息

Department of Nephrology, Qingpu Branch of Zhongshan Hospital Affiliated to Fudan University, Qingpu District, Shanghai, P. R. China.

Department of Nephrology, Huai'an Second People's Hospital, The Affiliated Hospital of Xuzhou Medical University, Xuzhou, Huai'an, P. R. China.

出版信息

J Cell Biochem. 2019 Aug;120(8):12574-12581. doi: 10.1002/jcb.28524. Epub 2019 Mar 4.

Abstract

Diabetic nephropathy (DN) is serious diabetic complication with capillary injury. Podocyte injury exerts a crucial effect on DN pathogenesis. MicroRNA-503 (miR-503) has been reported in various diseases including DN. Here, we investigated the detailed mechanism of miR-503 in the podocyte injury of DN. The functional role of miR-503 was investigated in cultured podocytes and diabetic rats. Podocyte injury was evaluated by migration and apoptosis experiments in podocytes and we observed that high glucose elevated miR-503 in a time and dose-dependent manner. Meanwhile, E2F transcription factor 3 (E2F3), as a crucial regulator in multiple diseases, was predicted as a potential target of miR-503 here. It was shown that E2F3 was greatly decreased in podocytes incubated with high glucose and miR-503 modulated its expression negatively. In addition, downregulation of E2F3 contributed to podocyte injury, which was reversed by miR-503 inhibitors in vitro. Furthermore, we proved that increase of miR-503 resulted in an unfavorable renal function in diabetic rats via targeting E2F3. These revealed for the first time that the overexpression of miR-503 promoted podocyte injury via targeting E2F3 in diabetic nephropathy and miR-503/E2F3 axis might represent a pathological mechanism of diabetic nephropathy progression.

摘要

糖尿病肾病(DN)是一种严重的糖尿病并发症,伴有毛细血管损伤。足细胞损伤对 DN 的发病机制有重要影响。MicroRNA-503(miR-503)在包括 DN 在内的各种疾病中都有报道。在这里,我们研究了 miR-503 在 DN 足细胞损伤中的详细机制。在培养的足细胞和糖尿病大鼠中研究了 miR-503 的功能作用。通过足细胞的迁移和凋亡实验评估足细胞损伤,结果表明高葡萄糖以时间和剂量依赖的方式上调 miR-503。同时,E2F 转录因子 3(E2F3)作为多种疾病的关键调节剂,被预测为 miR-503 的潜在靶标。结果表明,高葡萄糖孵育的足细胞中 E2F3 大大减少,miR-503 负调控其表达。此外,下调 E2F3 导致足细胞损伤,而在体外 miR-503 抑制剂可逆转这一现象。此外,我们通过靶向 E2F3 证明了 miR-503 在糖尿病大鼠中增加导致肾功能恶化。这首次表明,在糖尿病肾病中,miR-503 的过表达通过靶向 E2F3 促进足细胞损伤,miR-503/E2F3 轴可能代表糖尿病肾病进展的病理机制。

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