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A 24-Residue Peptide (p5), Derived from p35, the Cdk5 Neuronal Activator, Specifically Inhibits Cdk5-p25 Hyperactivity and Tau Hyperphosphorylation*

机译:源自p35的24残基肽(p5)(Cdk5神经元激活剂)特异性抑制Cdk5-p25过度活跃和Tau过度磷酸化*

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摘要

The activity of Cdk5-p35 is tightly regulated in the developing and mature nervous system. Stress-induced cleavage of the activator p35 to p25 and a p10 N-terminal domain induces deregulated Cdk5 hyperactivity and perikaryal aggregations of hyperphosphorylated Tau and neurofilaments, pathogenic hallmarks in neurodegenerative diseases, such as Alzheimer disease and amyotrophic lateral sclerosis, respectively. Previously, we identified a 125-residue truncated fragment of p35 called CIP that effectively and specifically inhibited Cdk5-p25 activity and Tau hyperphosphorylation induced by Aβ peptides in vitro, in HEK293 cells, and in neuronal cells. Although these results offer a possible therapeutic approach to those neurodegenerative diseases assumed to derive from Cdk5-p25 hyperactivity and/or Aβ induced pathology, CIP is too large for successful therapeutic regimens. To identify a smaller, more effective peptide, in this study we prepared a 24-residue peptide, p5, spanning CIP residues Lys245–Ala277. p5 more effectively inhibited Cdk5-p25 activity than did CIP in vitro. In neuron cells, p5 inhibited deregulated Cdk5-p25 activity but had no effect on the activity of endogenous Cdk5-p35 or on any related endogenous cyclin-dependent kinases in HEK293 cells. Specificity of p5 inhibition in cortical neurons may depend on the p10 domain in p35, which is absent in p25. Furthermore, we have demonstrated that p5 reduced Aβ(1–42)-induced Tau hyperphosphorylation and apoptosis in cortical neurons. These results suggest that p5 peptide may be a unique and useful candidate for therapeutic studies of certain neurodegenerative diseases.
机译:Cdk5-p35的活性在发育和成熟的神经系统中受到严格调节。应激诱导的激活物p35至p25和p10 N末端结构域的裂解分别导致Cdk5过度活跃和过度磷酸化的Tau和神经丝的周生聚集,神经退行性疾病如阿尔茨海默氏病和肌萎缩性侧索硬化症的致病标志。以前,我们在HEK293细胞和神经元细胞中鉴定了一个125残基的p35截短片段,称为CIP,该片段可有效,特异地抑制Aβ肽诱导的Cdk5-p25活性和Tau过度磷酸化。尽管这些结果为假定源自Cdk5-p25过度活跃和/或Aβ诱导的病理学的那些神经退行性疾病提供了可能的治疗方法,但对于成功的治疗方案而言,CIP太大。为了鉴定出更小,更有效的肽,在这项研究中,我们制备了24个残基的肽p5,跨CIP残基Lys245–Ala277。与体外CIP相比,p5更有效地抑制Cdk5-p25活性。在神经元细胞中,p5抑制Cdk5-p25活性的失调,但对HEK293细胞中内源性Cdk5-p35的活性或任何相关的内源性细胞周期蛋白依赖性激酶没有影响。皮层神经元中p5抑制的特异性可能取决于p35中的p10结构域,而p25中不存在。此外,我们已经证明p5减少了Aβ(1-42)诱导的Tau过度磷酸化和皮层神经元的凋亡。这些结果表明,p5肽可能是某些神经退行性疾病的治疗研究的独特且有用的候选物。

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