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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Specific inhibition of p25/Cdk5 activity by the Cdk5 inhibitory peptide reduces neurodegeneration in vivo
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Specific inhibition of p25/Cdk5 activity by the Cdk5 inhibitory peptide reduces neurodegeneration in vivo

机译:Cdk5抑制肽对p25 / Cdk5活性的特异性抑制可减少体内神经变性

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The aberrant hyperactivation of Cyclin-dependent kinase 5 (Cdk5), by the production of its truncated activator p25, results in the formation of hyperphosphorylated tau, neuroinflammation, amyloid deposition, and neuronal death in vitro and in vivo. Mechanistically, this occurs as a result of a neurotoxic insult that invokes the intracellular elevation of calcium to activate calpain, which cleaves the Cdk5 activator p35 into p25. It has been shown previously that the p25 transgenic mouse as a model to investigate the mechanistic implications of p25 production in the brain, which recapitulates deregulated Cdk5-mediated neuropathological changes, such as hyperphosphorylated tau and neuronal death. To date, strategies to inhibit Cdk5 activity have not been successful in targeting selectively aberrant activity without affecting normal Cdk5 activity. Here we show that the selective inhibition of p25/Cdk5 hyperactivation in vivo, through overexpression of the Cdk5 inhibitory peptide (CIP), rescues against the neurodegenerative pathologies caused by p25/Cdk5 hyperactivation without affecting normal neurodevelopment afforded by normal p35/Cdk5 activity. Tau and amyloid pathologies as well as neuroinflammation are significantly reduced in the CIP-p25 tetra transgenic mice, whereas brain atrophy and subsequent cognitive decline are reversed in these mice. The findings reported here represent an important breakthrough in elucidating approaches to selectively inhibit the p25/Cdk5 hyperactivation as a potential therapeutic target to reduce neurodegeneration.
机译:细胞周期蛋白依赖性激酶5(Cdk5)的异常过度活化,通过产生其截短的活化剂p25,导致体内外磷酸化tau的形成,神经炎症,淀粉样蛋白沉积和神经元死亡。从机理上讲,这是由于神经毒性损伤导致钙在细胞内升高激活钙蛋白酶,从而将Cdk5活化剂p35裂解为p25而发生的。先前已经证明,p25转基因小鼠作为研究脑中p25产生机制的模型,可概括Cdk5介导的神经病理学改变,如过度磷酸化的tau和神经元死亡。迄今为止,抑制Cdk5活性的策略在靶向选择性异常活动而不影响正常Cdk5活性方面尚未成功。在这里,我们显示通过选择性表达Cdk5抑制肽(CIP)体内选择性抑制p25 / Cdk5过度活化,可以挽救由p25 / Cdk5过度活化引起的神经退行性病变,而不影响正常p35 / Cdk5活性提供的正常神经发育。在CIP-p25四基因转基因小鼠中,Tau和淀粉样蛋白病状以及神经炎症显着降低,而在这些小鼠中,脑萎缩和随后的认知能力下降得到了逆转。此处报道的发现代表了在阐明选择性抑制p25 / Cdk5过度激活作为减少神经变性的潜在治疗靶点的方法方面的重要突破。

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