首页> 外文期刊>Neurochemistry International: The International Journal for the Rapid Publication of Critical Reviews, Preliminary and Original Research Communications in Neurochemistry >Possible involvement of mitochondrial uncoupling protein-2 in cytotoxicity mediated by acquired N-methyl-d-aspartate receptor channels
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Possible involvement of mitochondrial uncoupling protein-2 in cytotoxicity mediated by acquired N-methyl-d-aspartate receptor channels

机译:线粒体解偶联蛋白2可能参与获得性N-甲基-d-天冬氨酸受体通道介导的细胞毒性

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摘要

We have previously shown the possible involvement of mitochondrial membrane potential disruption in the mechanisms underlying the neurotoxicity seen after activation of N-methyl-d-aspartate (NMDA) receptors (NMDAR) in primary cultured rat hippocampal neurons. In this study, we attempted to demonstrate a pivotal role of mitochondrial uncoupling protein-2 (UCP2) as a determinant of the NMDA neurotoxicity by using acquired NMDAR channels artificially orchestrated in HEK293 cells. In cells with overexpression of UCP2, immunoreactive UCP2 was exclusively detected at intracellular locations stained with the mitochondrial marker MitoTracker. In cells with acquired NMDAR channels, exposure to either NMDA or the calcium ionophore A23187 similarly led to a significant increase in cytosolic Ca 2+ levels determined by Fluo-3 imaging irrespective of the overexpression of UCP2. By contrast, NMDA, but not A23187, was significantly more effective in increasing mitochondrial Ca 2+ levels determined by Rhod-2 fluorescence imaging in cells transfected with NMDAR subunit and UCP2 expression vectors than in those without UCP2 overexpression. Overexpression of UCP2 significantly increased the number of cells stained with propidium iodide in cultures with acquired NMDAR channels, but failed to significantly affect that in cells exposed to A23187. Immunocytochemical and immunoprecipitation analyses similarly revealed the possible interaction between GluN1 subunit and UCP2 in HEK293 cells with acquired NMDAR channels and UCP2 overexpression. These results suggest that UCP2 could play a role as a determinant of the neurotoxicity mediated by NMDAR through a mechanism related to the unidentified interaction with the essential GluN1 subunit toward modulation of mitochondrial Ca 2+ levels in neurons.
机译:先前我们已经表明,在原代培养的大鼠海马神经元激活N-甲基-d-天冬氨酸(NMDA)受体(NMDAR)后,潜在的神经毒性机制可能涉及线粒体膜电位破坏。在这项研究中,我们试图通过使用HEK293细胞中人工合成的获得性NMDAR通道,证明线粒体解偶联蛋白2(UCP2)作为NMDA神经毒性的决定因素。在UCP2过表达的细胞中,仅在用线粒体标记MitoTracker染色的细胞内位置检测到免疫反应性UCP2。在具有获得性NMDAR通道的细胞中,暴露于NMDA或钙离子载体A23187类似地导致通过Fluo-3成像确定的胞浆Ca 2+水平显着增加,而与UCP2的过表达无关。相比之下,在用NMDAR亚基和UCP2表达载体转染的细胞中,NMDA而非A23187在通过Rhod-2荧光成像确定的线粒体Ca 2+水平上显着比没有UCP2过表达的细胞更有效。在具有获得性NMDAR通道的培养物中,UCP2的过表达显着增加了碘化丙啶染色的细胞数量,但未显着影响暴露于A23187的细胞中的细胞数量。免疫细胞化学和免疫沉淀分析相似地揭示了具有获得的NMDAR通道和UCP2过表达的HEK293细胞中GluN1亚基和UCP2之间可能存在相互作用。这些结果表明,UCP2可以通过与未知的与必需GluN1亚基相互作用,调节神经元线粒体Ca 2+水平的相互作用有关的机制,作为NMDAR介导的神经毒性的决定因素。

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