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Mitochondrial calcium uniporter Mcu controls excitotoxicity and is transcriptionally repressed by neuroprotective nuclear calcium signals

机译:线粒体钙单向转运蛋白Mcu控制兴奋性毒性并被神经保护性核钙信号转录抑制

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摘要

The recent identification of the mitochondrial Ca2+ uniporter gene (Mcu/Ccdc109a) has enabled us to address its role, and that of mitochondrial Ca2+ uptake, in neuronal excitotoxicity. Here we show that exogenously expressed Mcu is mitochondrially localized and increases mitochondrial Ca2+ levels following NMDA receptor activation, leading to increased mitochondrial membrane depolarization and excitotoxic cell death. Knockdown of endogenous Mcu expression reduces NMDA-induced increases in mitochondrial Ca2+, resulting in lower levels of mitochondrial depolarization and resistance to excitotoxicity. Mcu is subject to dynamic regulation as part of an activity-dependent adaptive mechanism that limits mitochondrial Ca2+ overload when cytoplasmic Ca2+ levels are high. Specifically, synaptic activity transcriptionally represses Mcu, via a mechanism involving the nuclear Ca2+ and CaM kinase-mediated induction of Npas4, resulting in the inhibition of NMDA receptor-induced mitochondrial Ca2+ uptake and preventing excitotoxic death. This establishes Mcu and the pathways regulating its expression as important determinants of excitotoxicity, which may represent therapeutic targets for excitotoxic disorders.
机译:线粒体Ca 2 + 单向基因(Mcu / Ccdc109a)的最新鉴定使我们能够解决其作用以及线粒体Ca 2 + 摄取在神经元兴奋性毒性中的作用。 。在这里,我们显示外源表达的Mcu位于线粒体,并在NMDA受体激活后增加线粒体Ca 2 + 的水平,导致线粒体膜去极化增加和兴奋性毒性细胞死亡。内源性Mcu表达的抑制降低了NMDA诱导的线粒体Ca 2 + 的增加,从而降低了线粒体去极化水平和抗兴奋性毒性。 Mcu受到动态调节的影响,这是一种依赖于活动的适应性机制的一部分,当细胞质中的Ca 2 + 水平较高时,该机制可限制线粒体Ca 2 + 的超载。具体而言,突触活性通过涉及核Ca 2 + 和CaM激酶介导的Npas4诱导的机制转录抑制Mcu,从而抑制NMDA受体诱导的线粒体Ca 2+ < / sup>吸收并防止兴奋性毒性死亡。这建立了Mcu及其调节其表达的途径,这是兴奋性毒性的重要决定因素,可能代表兴奋性毒性疾病的治疗靶标。

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