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蛋白激酶 C-α与线粒体中的 iHSP70 相互作用促进肾近端肾小管细胞损伤后线粒体功能的恢复。

Protein kinase C-α interaction with iHSP70 in mitochondria promotes recovery of mitochondrial function after injury in renal proximal tubular cells.

机构信息

Dept. of Pharmaceutical Sciences, Univ. of Arkansas for Medical Sciences, 4301 W. Markham St., Little Rock, AR 72205, USA.

出版信息

Am J Physiol Renal Physiol. 2013 Sep 1;305(5):F764-76. doi: 10.1152/ajprenal.00061.2013. Epub 2013 Jun 26.

Abstract

This study determined the role of PKC-α and associated inducible heat shock protein 70 (iHSP70) in the repair of mitochondrial function in renal proximal tubular cells (RPTCs) after oxidant injury. Wild-type PKC-α (wtPKC-α) and an inactive PKC-α [dominant negative dn; PKC-α] mutant were overexpressed in primary cultures of RPTCs, and iHSP70 levels and RPTC regeneration were assessed after treatment with the oxidant tert-butylhydroperoxide (TBHP). TBHP exposure increased ROS production and induced RPTC death, which was prevented by ferrostatin and necrostatin-1 but not by cyclosporin A. Overexpression of wtPKC-α maintained mitochondrial levels of active PKC-α, reduced cell death, and accelerated proliferation without altering ROS production in TBHP-injured RPTCs. In contrast, dnPKC-α blocked proliferation and monolayer regeneration. Coimmunoprecipitation and proteomic analysis demonstrated an association between inactive, but not active, PKC-α and iHSP70 in mitochondria. Mitochondrial iHSP70 levels increased as levels of active PKC-α decreased after injury. Overexpression of dnPKC-α augmented, whereas overexpression of wtPKC-α abrogated, oxidant-induced increases in mitochondrial iHSP70 levels. iHSP70 overexpression (1) maintained mitochondrial levels of phosphorylated PKC-α, (2) improved the recovery of state 3 respiration and ATP content, (3) decreased RPTC death (an effect abrogated by cyclosporine A), and (4) accelerated proliferation after oxidant injury. In contrast, iHSP70 inhibition blocked the recovery of ATP content and exacerbated RPTC death. Inhibition of PKC-α in RPTC overexpressing iHSP70 blocked the protective effects of iHSP70. We conclude that active PKC-α maintains mitochondrial function and decreases cell death after oxidant injury. iHSP70 is recruited to mitochondria in response to PKC-α dephosphorylation and associates with and reactivates inactive PKC-α, which promotes the recovery of mitochondrial function, decreases RPTC death, and improves regeneration.

摘要

本研究旨在确定蛋白激酶 C-α(PKC-α)及其相关诱导性热休克蛋白 70(iHSP70)在肾近端小管细胞(RPTC)氧化损伤后修复线粒体功能中的作用。在 RPTC 的原代培养物中过表达野生型 PKC-α(wtPKC-α)和失活的 PKC-α[显性负变 dn; PKC-α]突变体,并在经氧化应激 tert-butylhydroperoxide(TBHP)处理后评估 iHSP70 水平和 RPTC 再生情况。TBHP 暴露会增加活性氧(ROS)的产生并诱导 RPTC 死亡,而铁抑素和坏死抑素-1可预防这种死亡,但环孢素 A 则不能。wtPKC-α 的过表达维持了线粒体中活性 PKC-α 的水平,减少了细胞死亡,并加速了增殖,而不会改变 TBHP 损伤的 RPTC 中 ROS 的产生。相反,dnPKC-α 阻断了增殖和单层再生。共免疫沉淀和蛋白质组学分析表明,在损伤的 RPTC 中,失活但非活性的 PKC-α与 iHSP70 存在关联。线粒体 iHSP70 水平随着损伤后活性 PKC-α 水平的降低而增加。dnPKC-α 的过表达增强了,而 wtPKC-α 的过表达则削弱了,氧化应激诱导的线粒体 iHSP70 水平的增加。iHSP70 的过表达(1)维持了线粒体中磷酸化 PKC-α 的水平,(2)改善了状态 3 呼吸和 ATP 含量的恢复,(3)减少了 RPTC 的死亡(这一作用被环孢素 A 阻断),(4)在氧化应激损伤后加速了增殖。相反,iHSP70 的抑制阻断了 ATP 含量的恢复并加剧了 RPTC 的死亡。在过表达 iHSP70 的 RPTC 中抑制 PKC-α 阻断了 iHSP70 的保护作用。我们的结论是,活性 PKC-α 在氧化应激损伤后维持线粒体功能并减少细胞死亡。iHSP70 被募集到线粒体中以响应 PKC-α 的去磷酸化,并与失活的 PKC-α 结合并使其重新激活,这促进了线粒体功能的恢复,减少了 RPTC 的死亡,并改善了再生。

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