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A vital role for Angptl3 in the PAN-induced podocyte loss by affecting detachment and apoptosis in vitro

机译:Angptl3通过影响离体和细胞凋亡在PAN诱导的足细胞丢失中起重要作用

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Podocyte detachment and apoptosis are two risk factors causing podocyte loss, F-actin rearrangement is involved in detachment and apoptosis. However, the nature of events that promote detachment and apoptosis of podocytes and whether detachment occurred simultaneously with apoptosis are still unclear. Previously, it was found that angiopoietin-like3 (Angptl3) induces F-actin rearrangement in podocytes. In this study we investigate whether Angptl3 influences podocyte loss (detachment and apoptosis) and the process through which Angptl3 exactly influenced the podocyte loss. In conditionally immortalized mice podocytes, recombinant mice Angptl3 protein (rm-Angptl3) was used to mimic Angptl3 overexpression model and transfection with small interfering RNA (siRNA) to knockdown the expression of Angptl3. Both flow cytometry analysis and terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling assay were used to detect apoptosis. Rearrangement of F-actin was assessed using confocal microscopy. Western blot assay was used to measure levels of Angptl3, integrin α3β1, integrin-linked kinase (ILK), p53, caspase 3, and phosphorylation of integrin β1. In a puromycin aminonucleoside (PAN)-induced podocyte injury model, rm-Angptl3 accelerated the loss of podocytes, both detachment and apoptosis occurred, and F-actin rearrangement is involved in the process. However, knockdown of Angptl3 by siRNA markedly ameliorated these injuries. Observed effects were partially correlated with the altered integrin α3β1, ILK and p53, rather than caspase 3. Angptl3 is a novel factor involved in the PAN-induced podocyte loss by affecting detachment and apoptosis in vitro. This study helps to deepen the understanding of the mechanisms of podocyte loss and lays the foundation for developing a new successful therapy for podocyte injury via lower expression of Angptl3.
机译:足细胞脱离和凋亡是引起足细胞丧失的两个危险因素,F-肌动蛋白重排参与脱离和凋亡。然而,尚不清楚促进足细胞脱离和凋亡的事件的性质以及脱离是否与细胞凋亡同时发生。以前,已发现血管生成素样3(Angptl3)诱导足细胞中的F-肌动蛋白重排。在这项研究中,我们调查了Angptl3是否影响足细胞损失(分离和凋亡)以及Angptl3确切影响足细胞损失的过程。在条件永生的小鼠足细胞中,重组小鼠Angptl3蛋白(rm-Angptl3)用于模拟Angptl3过表达模型,并用小干扰RNA(siRNA)转染以降低Angptl3的表达。流式细胞仪分析和末端脱氧核苷酸转移酶介导的dUTP缺口末端标记法均用于检测细胞凋亡。使用共聚焦显微镜评估F-肌动蛋白的重排。蛋白质印迹法用于测量Angptl3,整联蛋白α3β1,整联蛋白连接的激酶(ILK),p53,胱天蛋白酶3的水平以及整联蛋白β1的磷酸化。在嘌呤霉素氨基核苷(PAN)诱导的足细胞损伤模型中,rm-Angptl3加速了足细胞的损失,发生了分离和凋亡,并且F-肌动蛋白重排参与了该过程。但是,siRNA敲除Angptl3可以明显减轻这些伤害。观察到的作用与整联蛋白α3β1,ILK和p53的改变部分相关,而不是与胱天蛋白酶3相关。Angptl3是一种新的因子,可通过影响离体和离体细胞凋亡来参与PAN诱导的足细胞丢失。这项研究有助于加深对足细胞丢失机制的理解,并为开发一种通过降低Angptl3表达成功治疗足细胞损伤的新疗法奠定基础。

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