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线粒体钙单向转运体对海马细胞缺血/再灌注损伤中线粒体分裂的影响。

The effect of mitochondrial calcium uniporter on mitochondrial fission in hippocampus cells ischemia/reperfusion injury.

作者信息

Zhao Lantao, Li Shuhong, Wang Shilei, Yu Ning, Liu Jia

机构信息

Department of Anesthesiology, Affiliated Hospital of Qingdao University, Qingdao 266003, Shandong, China.

Department of Anesthesiology, Affiliated Hospital of Qingdao University, Qingdao 266003, Shandong, China.

出版信息

Biochem Biophys Res Commun. 2015 Jun 5;461(3):537-42. doi: 10.1016/j.bbrc.2015.04.066. Epub 2015 Apr 21.

Abstract

The mitochondrial calcium uniporter (MCU) transports free Ca(2+) into the mitochondrial matrix, maintaining Ca(2+) homeostasis, thus regulates the mitochondrial morphology. Previous studies have indicated that there was closely crosstalk between MCU and mitochondrial fission during the process of ischemia/reperfusion injury. This study constructed a hypoxia reoxygenation model using primary hippocampus neurons to mimic the cerebral ischemia/reperfusion injury and aims to explore the exactly effect of MCU on the mitochondrial fission during the process of ischemia/reperfusion injury and so as the mechanisms. Our results found that the inhibitor of the MCU, Ru360, decreased mitochondrial Ca(2+) concentration, suppressed the expression of mitochondrial fission protein Drp1, MIEF1 and Fis1, and thus improved mitochondrial morphology significantly. Whereas spermine, the agonist of the MCU, had no significant impact compared to the I/R group. This study demonstrated that the MCU regulates the process of mitochondrial fission by controlling the Ca(2+) transport, directly upregulating mitochondrial fission proteins Drp1, Fis1 and indirectly reversing the MIEF1-induced mitochondrial fusion. It also provides new targets for brain protection during ischemia/reperfusion injury.

摘要

线粒体钙单向转运体(MCU)将游离Ca(2+)转运到线粒体基质中,维持Ca(2+)稳态,从而调节线粒体形态。先前的研究表明,在缺血/再灌注损伤过程中,MCU与线粒体分裂之间存在密切的相互作用。本研究利用原代海马神经元构建缺氧复氧模型,模拟脑缺血/再灌注损伤,旨在探讨MCU在缺血/再灌注损伤过程中对线粒体分裂的确切作用及其机制。我们的结果发现,MCU抑制剂Ru360降低了线粒体Ca(2+)浓度,抑制了线粒体分裂蛋白Drp1、MIEF1和Fis1的表达,从而显著改善了线粒体形态。而MCU激动剂精胺与缺血/再灌注组相比没有显著影响。本研究表明,MCU通过控制Ca(2+)转运来调节线粒体分裂过程,直接上调线粒体分裂蛋白Drp1、Fis1,并间接逆转MIEF1诱导的线粒体融合。它还为缺血/再灌注损伤期间的脑保护提供了新的靶点。

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