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Pum2-Mff 轴精细调节急性缺血性肾损伤中的线粒体质量控制。

Pum2-Mff axis fine-tunes mitochondrial quality control in acute ischemic kidney injury.

机构信息

Medical School of Chinese PLA, Chinese PLA General Hospital, Beijing, China.

Department of Chemical Engineering, University of Minnesota-Duluth, Duluth, MN, 55812, USA.

出版信息

Cell Biol Toxicol. 2020 Aug;36(4):365-378. doi: 10.1007/s10565-020-09513-9. Epub 2020 Jan 28.

Abstract

Mitochondrial fission factor (Mff) has been demonstrated to play a role in the activation of mitochondrial cleavage and mitochondrial death, denoting its role in the regulation of mitochondrial quality control. Recent evidence suggested that the mRNA translation of Mff is under the negative regulation by the RNA-binding protein Pumilio2 (Pum2). This study was designed to examine the role of Pum2 and Mff in the governance of mitochondrial quality control in a murine model of acute ischemic kidney injury. Our results indicated that genetic deletion of Mff overtly attenuated ischemic acute kidney injury (AKI)-induced renal failure through inhibition of pro-inflammatory response, tubular oxidative stress, and ultimately cell death in the kidney. Furthermore, Mff inhibition effectively preserved mitochondrial homeostasis through amelioration of mitochondrial mitosis, restoration of Sirt1/3 expression, and boost of mitochondrial respiration. Western blot analysis revealed that levels of Pum2 were significantly downregulated by ischemic AKI, inversely coinciding with levels of Mff. Overexpression of Pum2 reduced ischemic AKI-mediated Mff upregulation and offered protection on renal tubules through modulation of mitochondrial quality control. Taken together, our data have unveiled the molecular mechanism of the Pum2-Mff axis in mitochondrial quality control in a mouse model of ischemic AKI. These data indicated the therapeutic potential of Pum2 activation and Mff inhibition in the management of ischemic AKI.

摘要

线粒体裂变因子(Mff)已被证明在促进线粒体分裂和线粒体死亡中发挥作用,这表明它在调节线粒体质量控制中发挥作用。最近的证据表明,Mff 的 mRNA 翻译受到 RNA 结合蛋白 Pumilio2(Pum2)的负调控。本研究旨在探讨 Pum2 和 Mff 在急性缺血性肾损伤小鼠模型中线粒体质量控制中的作用。我们的结果表明,Mff 的基因缺失通过抑制促炎反应、肾小管氧化应激以及最终的细胞死亡,明显减轻了缺血性急性肾损伤(AKI)诱导的肾功能衰竭。此外,Mff 抑制通过改善线粒体有丝分裂、恢复 Sirt1/3 表达以及促进线粒体呼吸,有效地维持了线粒体的稳态。Western blot 分析显示,Pum2 的水平在缺血性 AKI 中显著下调,与 Mff 的水平相反。Pum2 的过表达降低了缺血性 AKI 介导的 Mff 上调,并通过调节线粒体质量控制对肾小管提供保护。总之,我们的数据揭示了 Pum2-Mff 轴在缺血性 AKI 小鼠模型中线粒体质量控制中的分子机制。这些数据表明激活 Pum2 和抑制 Mff 在缺血性 AKI 管理中的治疗潜力。

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