首页> 外文期刊>Journal of Computer-Aided Molecular Design >Computational study of the inhibitory mechanism of the kinase CDK5 hyperactivity by peptide p5 and derivation of a pharmacophore
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Computational study of the inhibitory mechanism of the kinase CDK5 hyperactivity by peptide p5 and derivation of a pharmacophore

机译:p5肽抑制CDK5激酶活性过高的机制和药效团的推导的计算研究

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摘要

The hyperactivity of the cyclic dependent kinase 5 (CDK5) induced by the activator protein p25 has been linked to a number of pathologies of the brain. The CDK5-p25 complex has thus emerged as a major therapeutic target for Alzheimer's disease (AD) and other neurodegenerative conditions. Experiments have shown that the peptide p5 reduces the CDK5-p25 activity without affecting the endogenous CDK5-p35 activity, whereas the peptide TFP5, obtained from p5, elicits similar inhibition, crosses the blood-brain barrier, and exhibits behavioral rescue of AD mice models with no toxic side effects. The molecular basis of the kinase inhibition is not currently known, and is here investigated by computer simulations. It is shown that p5 binds the kinase at the same CDK5/p25 and CDK5/p35 interfaces, and is thus a non-selective competitor of both activators, in agreement with available experimental data in vitro. Binding of p5 is enthalpically driven with an affinity estimated in the low A mu M range. A quantitative description of the binding site and pharmacophore is presented, and options are discussed to increase the binding affinity and selectivity in the design of drug-like compounds against AD.
机译:激活蛋白p25诱导的环状依赖性激酶5(CDK5)的过度活跃与大脑的许多病理现象有关。因此,CDK5-p25复合物已成为阿尔茨海默氏病(AD)和其他神经退行性疾病的主要治疗靶标。实验表明,肽p5降低了CDK5-p25活性,而不会影响内源性CDK5-p35活性,而从p5获得的肽TFP5受到类似的抑制,穿越血脑屏障,并表现出AD小鼠模型的行为拯救无毒副作用。激酶抑制的分子基础目前未知,在此通过计算机模拟进行研究。结果表明,p5与激酶在相同的CDK5 / p25和CDK5 / p35界面结合,因此是两种激活剂的非选择性竞争剂,与体外可获得的实验数据一致。 p5的结合以低AμM范围内估计的亲和力焓驱动。给出了结合位点和药效团的定量描述,并讨论了在设计针对AD的药物样化合物时增加结合亲和力和选择性的选择。

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