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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The critical role of calpain versus caspase activation in excitotoxic injury induced by nitric oxide.
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The critical role of calpain versus caspase activation in excitotoxic injury induced by nitric oxide.

机译:钙蛋白酶与半胱天冬酶激活在一氧化氮引起的兴奋性毒性损伤中的关键作用。

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The pathogenesis of various acute and chronic neurodegenerative disorders has been linked to excitotoxic processes and excess generation of nitric oxide. We investigated the deleterious effects of calpain activation in nitric oxide-elicited neuronal apoptosis. In this model, nitric oxide triggers apoptosis of murine cerebellar granule cells by an excitotoxic mechanism requiring glutamate exocytosis and receptor-mediated intracellular calcium overload. Here, we found that calcium-dependent cysteine proteases, calpains, were activated early in apoptosis of cerebellar granule cells exposed to nitric oxide. Release of the proapoptogenic factors cytochrome c and apoptosis-inducing factor from mitochondria preceded neuronal death. However, caspases-3 was not activated. We observed that procaspase-9 was cleaved by calpains to proteolytically inactive fragments. Inhibition of calpains by different synthetic calpain inhibitors or by adenovirally mediated expression of the calpastatin inhibitory domain preventedmitochondrial release of cytochrome c and apoptosis-inducing factor, calpain-specific proteolysis and neuronal apoptosis. We conclude that (i) signal transduction pathways exist that prevent the entry of neurons into a caspase-dependent death after mitochondrial release of cytochrome c and (ii) that calpain activation links nitric oxide-triggered excitotoxic events with the execution of caspase-independent apoptosis in neurons.
机译:各种急性和慢性神经退行性疾病的发病机理都与兴奋性毒性过程和一氧化氮的过量产生有关。我们研究了钙蛋白酶激活在一氧化氮引起的神经元凋亡中的有害作用。在该模型中,一氧化氮通过需要谷氨酸胞吐作用和受体介导的细胞内钙超载的兴奋毒性机制触发鼠小脑颗粒细胞的凋亡。在这里,我们发现钙依赖性半胱氨酸蛋白酶钙蛋白酶在暴露于一氧化氮的小脑颗粒细胞凋亡的早期被激活。线粒体释放促凋亡因子细胞色素c和凋亡诱导因子的时间早于神经元死亡。但是,caspases-3未激活。我们观察到,procaspase-9被钙蛋白酶切割成蛋白水解无活性的片段。通过不同的合成钙蛋白酶抑制剂或腺病毒介导的钙蛋白酶抑制剂抑制域的表达来抑制钙蛋白酶可以阻止线粒体释放细胞色素c和凋亡诱导因子,钙蛋白酶特异性蛋白水解和神经元凋亡。我们得出的结论是:(i)存在信号转导通路,可防止神经元进入细胞色素c的线粒体释放后进入caspase依赖性死亡,以及(ii)钙蛋白酶激活将一氧化氮触发的兴奋性毒性事件与caspase依赖性凋亡的执行联系在一起在神经元中。

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