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首页> 外文期刊>Molecular Neurobiology >NCX1 Exchanger Cooperates with Calretinin to Confer Preconditioning-Induced Tolerance Against Cerebral Ischemia in the Striatum
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NCX1 Exchanger Cooperates with Calretinin to Confer Preconditioning-Induced Tolerance Against Cerebral Ischemia in the Striatum

机译:NCX1交换器与Calretinin合作赋予纹状体对脑缺血的预处理诱导耐受性

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摘要

Recently, the Na+/Ca+2 exchanger NCX1 and the calcium binding protein calretinin have emerged as new molecular effectors of delayed preconditioning in the brain. In the present study, we investigated whether NCX1 and calretinin cooperate within the preconditioned striatum to confer neurons greater resistance to degeneration. Confocal microscopy analysis revealed that NCX1 expression was upregulated in calretinin-positive interneurons in the rat striatum after tolerance induction. Consistently, coimmunoprecipitation assays performed on human SHSY-5Y cells, a neuronal cell line which constitutively expresses calretinin, revealed a binding between NCX1 and calretinin. Finally, silencing of calretinin expression, both in vitro and in vivo, significantly prevented preconditioning-induced neuroprotection. Interestingly, our biochemical and functional studies showed that the selective silencing of calretinin in brain cells significantly prevented not only the preconditioning-induced upregulation of NCX1 expression and activity but also the activation of the prosurvival protein kinase Akt, which is involved in calretinin and NCX1 protective actions. Collectively, our results indicate that the Na+/Ca+2 exchanger NCX1 and the calcium binding protein calretinin cooperate within the striatum to confer tolerance against cerebral ischemia.
机译:最近,Na + / Ca + 2交换剂NCX1和钙结合蛋白降钙素已成为大脑中延迟预处理的新分子效应器。在本研究中,我们调查了NCX1和Calretinin是否在预处理的纹状体内协同作用,赋予神经元更大的变性抵抗力。共聚焦显微镜分析显示,耐受诱导后,大鼠纹状体中钙网蛋白阳性的中间神经元中NCX1表达上调。一致地,对人类组成型表达钙调蛋白的神经细胞SHSY-5Y细胞进行的免疫共沉淀试验揭示了NCX1和钙调蛋白之间的结合。最后,在体外和体内,钙调蛋白表达的沉默均显着阻止了预处理诱导的神经保护作用。有趣的是,我们的生化和功能研究表明,脑细胞中降钙素的选择性沉默不仅可以显着阻止预处理诱导的NCX1表达和活性的上调,还可以阻止激活生存蛋白激酶Akt的激活,后者参与钙调蛋白和NCX1保护动作。总的来说,我们的结果表明Na + / Ca + 2交换剂NCX1和钙结合蛋白降钙素在纹状体内协同作用,从而赋予了对脑缺血的耐受性。

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