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S-Nitrosylation activates Cdk5 and contributes to synaptic spine loss induced by β-amyloid peptide

机译:S-亚硝基化激活Cdk5并促进β-淀粉样肽诱导的突触脊柱丢失

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摘要

The activity of Cdk5 and its regulatory subunit p35 is thought to be important in both normal brain function and neurodegenerative disease pathogenesis. Increased Cdk5 activity, via proteolytic cleavage of p35 to a p25 fragment by the calcium-activated protease calpain or by phosphorylation at Cdk5(Tyr15), can contribute to neurotoxicity. Nonetheless, our knowledge of regulation of Cdk5 activity in disease states is still emerging. Here we demonstrate that Cdk5 is activated by S-nitrosylation or reaction of nitric oxide (NO)-related species with the thiol groups of cysteine residues 83 and 157, to form SNO-Cdk5. We then show that S-nitrosylation of Cdk5 contributes to amyloid-β (Aβ) peptide-induced dendritic spine loss. Furthermore, we observed significant levels of SNO-Cdk5 in postmortem Alzheimer’s disease (AD) but not in normal human brains. These findings suggest that S-nitrosylation of Cdk5 is an aberrant regulatory mechanism of enzyme activity that may contribute to the pathogenesis of AD.
机译:Cdk5及其调节亚基p35的活性被认为在正常的脑功能和神经退行性疾病的发病机理中均很重要。通过钙激活的蛋白酶钙蛋白酶或将Cdk5(Tyr15)磷酸化将p35蛋白水解为p25片段,增加Cdk5活性可导致神经毒性。尽管如此,我们对疾病状态下Cdk5活性调节的认识仍在不断涌现。在这里,我们证明Cdk5通过S-亚硝基化或一氧化氮(NO)相关物种与半胱氨酸残基83和157的巯基反应形成SNO-Cdk5。然后,我们表明Cdk5的S-亚硝基化有助于淀粉样β(Aβ)肽诱导的树突状脊柱丢失。此外,我们在死后的阿尔茨海默氏病(AD)中观察到了SNO-Cdk5的显着水平,但在正常人脑中却没有。这些发现表明,Cdk5的S-亚硝基化是酶活性的异常调节机制,可能有助于AD的发病机理。

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