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S-nitrosylation of Cdk5: Potential implications in amyloid-β-related neurotoxicity in Alzheimer disease

机译:Cdk5的S-亚硝基化:阿尔茨海默病的淀粉样β相关神经毒性的潜在影响

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摘要

Aberrant activation of Cdk5 has been implicated in the process of neurodegenerative diseases such as Alzheimer disease (AD). We recently reported that S-nitrosylation of Cdk5 (forming SNO-Cdk5) at specific cysteine residues results in excessive activation of Cdk5, contributing to mitochondrial dysfunction, synaptic damage and neuronal cell death in models of AD. Furthermore, SNO-Cdk5 acts as a nascent S-nitrosylase, transnitrosylating the mitochondrial fission protein Drp1 and enhancing excessive mitochondrial fission in dendritic spines. However, a molecular mechanism that leads to the formation of SNO-Cdk5 in neuronal cells remained obscure. Here, we demonstrate that neuronal nitric oxide synthase (NOS1) interacts with Cdk5 and that the close proximity of the two proteins facilitates the formation of SNO-Cdk5. Interestingly, as a negative feedback mechanism, Cdk5 phosphorylates and suppresses NOS1 activity. Thus, together with our previous report, these findings delineate an S-nitrosylation pathway wherein Cdk5/NOS1 interaction enhances SNO-Cdk5 formation, mediating mitochondrial dysfunction and synaptic loss during the etiology of AD.
机译:Cdk5的异常激活已牵涉到神经退行性疾病(例如阿尔茨海默氏病(AD))的过程中。我们最近报道,在特定半胱氨酸残基上Cdk5的S-亚硝基化(形成SNO-Cdk5)导致Cdk5过度活化,导致线粒体功能障碍,突触损伤和AD模型神经细胞死亡。此外,SNO-Cdk5充当新生的S-亚硝化酶,使亚硝化线粒体裂变蛋白Drp1转氨化并增强树突棘中的线粒体过度裂变。但是,导致神经元细胞中SNO-Cdk5形成的分子机制仍然不清楚。在这里,我们证明神经元一氧化氮合酶(NOS1)与Cdk5相互作用,并且两个蛋白的紧密接近促进了SNO-Cdk5的形成。有趣的是,作为负反馈机制,Cdk5磷酸化并抑制NOS1活性。因此,与我们以前的报告一起,这些发现勾画出S-亚硝基化途径,其中Cdk5 / NOS1相互作用增强了SNO-Cdk5的形成,介导了AD病因期间的线粒体功能障碍和突触丧失。

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