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线粒体转位的 P66Shc 通过促进铁死亡加剧顺铂诱导的 AKI。

Mitochondrial Translocation of P66Shc Aggravates Cisplatin-induced AKI by Promoting Ferroptosis.

机构信息

Department of Nephrology, The Third Xiangya Hospital, Central South University, Changsha, China.

The Critical Kidney Disease Research Center of Central South University,. Changsha, Hunan Province, China.

出版信息

Curr Med Chem. 2023;30(6):744-756. doi: 10.2174/0929867329666220819112808.

Abstract

OBJECTIVE

The objective of this study is to evaluate the regulatory mechanism between P66Shc and ferroptosis in cisplatin-induced acute kidney injury (CP-AKI).

METHODS

A CP-AKI model was constructed both in vivo and in vitro using C57BL/6 mice and HK-2 cells, respectively. Renal histopathological injury, reactive oxygen species (ROS), and apoptosis were detected. Some parameters of ferroptosis (e.g. 4HNE and GPX4) and the expression of P66Shc/ P-P66Shc both in mitochondria and cytoplasm were tested. In in vitro studies, HK-2 cells were incubated with CP (50 uM); additionally, Fer1 and P66Shc siRNA were applied to explore the molecular regulatory mechanism of P66Shc in ferroptosis. The levels of mitochondrial ROS, apoptosis and the expression of 4HNE,GPX4, P66Shc, and P-P66Shc were tested. Furthermore, the mitochondrial translocation of P66Shc was detected.

RESULTS

CP treatment caused elevation of Scr, BUN and renal MDA levels and decreased renal SOD, GSH-PX and GPX4 levels. CP enhanced the expression of 4HNE, P66Shc and P-P66Shc both in vivo and in vitro. Renal oxidative stress and apoptosis were significantly increased in CP-AKI mice. Electron microscopy examination indicated obvious mitochondria injury in renal tubular cells of CP-AKI mice. The level of ferroptosis and the translocation of P-P66Shc from the cytoplasm to mitochondria were significantly increased in HK-2 cells under CP condition, and these effects were obviously blocked by P66Shc siRNA treatment. Conversely, pretreatment with the ferroptosis inhibitor (Fer1) had no effect on the expression and mitochondria translocation of PP66Shc under CP condition.

CONCLUSION

Mitochondrial translocation of P66Shc could result in mitochondrial injury and lipid peroxide accumulation, which ultimately led to ferroptosis and aggravated CPinduced AKI.

摘要

目的

本研究旨在评估 P66Shc 与顺铂诱导的急性肾损伤(CP-AKI)中细胞铁死亡之间的调控机制。

方法

分别采用 C57BL/6 小鼠和 HK-2 细胞构建 CP-AKI 体内和体外模型。检测肾组织病理损伤、活性氧(ROS)和细胞凋亡。检测铁死亡相关参数(如 4HNE 和 GPX4)以及线粒体和细胞质中 P66Shc/P-P66Shc 的表达。在体外研究中,HK-2 细胞用 CP(50μM)孵育;此外,还应用 Fer1 和 P66Shc siRNA 来探讨 P66Shc 在铁死亡中的分子调控机制。检测线粒体 ROS、凋亡以及 4HNE、GPX4、P66Shc 和 P-P66Shc 的表达。此外,还检测了 P66Shc 的线粒体易位。

结果

CP 处理导致 Scr、BUN 和肾 MDA 水平升高,SOD、GSH-PX 和 GPX4 水平降低。CP 增强了体内和体外的 4HNE、P66Shc 和 P-P66Shc 的表达。CP-AKI 小鼠肾组织氧化应激和凋亡明显增加。电镜检查显示 CP-AKI 小鼠肾小管细胞明显的线粒体损伤。CP 条件下,HK-2 细胞中铁死亡水平和 P-P66Shc 从细胞质向线粒体的易位明显增加,P66Shc siRNA 处理明显阻断了这些作用。相反,铁死亡抑制剂(Fer1)预处理对 CP 条件下 P-P66Shc 的表达和线粒体易位无影响。

结论

P66Shc 的线粒体易位可导致线粒体损伤和脂质过氧化物积累,最终导致铁死亡,并加重 CP 诱导的 AKI。

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