首页> 美国卫生研究院文献>Journal of Enzyme Inhibition and Medicinal Chemistry >A mitochondrial-targeted peptide ameliorated podocyte apoptosis through a HOCl-alb-enhanced and mitochondria-dependent signalling pathway in diabetic rats and in vitro
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A mitochondrial-targeted peptide ameliorated podocyte apoptosis through a HOCl-alb-enhanced and mitochondria-dependent signalling pathway in diabetic rats and in vitro

机译:线粒体靶向肽通过HOCl-alb增强和线粒体依赖性信号通路改善了糖尿病大鼠和体外的足细胞凋亡

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摘要

Mitochondria play important roles in the development of diabetic kidney disease (DKD). The SS peptide is a tetrapeptide that is located and accumulated in the inner mitochondrial membrane; it reduces reactive oxygen species (ROS) and prevents mitochondrial dysfunction. Podocytes are key cellular components in DKD progression. However, whether the SS peptide can exert renal protection through podocytes and the mechanism involved are unknown. In the present study, we explored the mechanisms of the SS peptide on podocyte injury in vivo and in vitro. Compared with the control group, the glomerular podocyte number and expression of WT1 were significantly reduced and TUNEL-positive podocytes were significantly increased in renal tissues in the diabetic rat. These effects were further exacerbated by hypochlorite-modified albumin (HOCl-alb) challenge but prevented by SS-31. In vitro, SS-31 blocked apoptosis in podocyte cell line induced by HOCl-alb. SS-31 prevented oxidative stress and mitochondria-dependent apoptosis signalling by HOCl-alb in vivo and in vitro, as evidenced by the release of cytochrome c (cyt c), binding of apoptosis activated factor-1 (Apaf-1) and caspase-9, and activation of caspases. These data suggest that SS-31 may prevent podocyte apoptosis, exerting renal protection in diabetes mellitus, probably through an apoptosis-related signalling pathway involving oxidative stress and culminating in mitochondria.
机译:线粒体在糖尿病肾病(DKD)的发展中起重要作用。 SS肽是一种四肽,位于并在线粒体内膜中。它减少了活性氧(ROS)并防止线粒体功能障碍。足细胞是DKD进展中的关键细胞成分。但是,SS肽是否可以通过足细胞发挥肾脏保护作用及其机制尚不清楚。在本研究中,我们探讨了SS肽在体内和体外对足细胞损伤的机制。与对照组相比,糖尿病大鼠肾脏组织中肾小球足细胞数量和WT1表达明显减少,TUNEL阳性足细胞明显增加。次氯酸盐修饰的白蛋白(HOCl-alb)攻击进一步加剧了这些作用,但SS-31阻止了这些作用。在体外,SS-31阻断了HOCl-alb诱导的足细胞细胞凋亡。 SS-31通过体内和体外的HOCl-alb阻止了氧化应激和线粒体依赖性细胞凋亡信号传导,如细胞色素c(cyt c)的释放,细胞凋亡激活因子1(Apaf-1)和胱天蛋白酶-的结合所证明的。 9,激活胱天蛋白酶。这些数据表明,SS-31可能通过涉及氧化应激并最终在线粒体中的凋亡相关信号传导途径,阻止了足细胞凋亡,在糖尿病中发挥了肾脏保护作用。

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