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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Peptides derived from Cdk5 activator p35, specifically inhibit deregulated activity of Cdk5
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Peptides derived from Cdk5 activator p35, specifically inhibit deregulated activity of Cdk5

机译:源自Cdk5激活剂p35的肽特异性抑制Cdk5的活性失调

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Normal Cdk5 activity, conferred mainly by association with its primary activator p35, is critical for normal function of the cell and must be tightly regulated. During neurotoxicity, p35 is cleaved to form p25, which becomes a potent and mislocalized hyperactivator of Cdk5, resulting in a deregulation of Cdk5 activity. p25 levels have been found to be elevated in Alzheimer's disease (AD) brain and overexpression of p25 in a transgenic mouse results in the formation of phosphorylated tau, neurofibrillary tangles and cognitive deficits that are pathological hallmarks of AD. p25/Cdk5 also hyperphosphorylates neurofilament proteins that constitute pathological hallmarks found in Parkinson's disease and amyotrophic lateral sclerosis. The selective targeting of p25/Cdk5 activity without affecting p35/Cdk5 activity has been unsuccessful. In this review we detail our recent studies of selective p25/Cdk5 inhibition without affecting p35/Cdk5 or mitotic Cdk activities. We found that a further truncation of p25 to yield a Cdk5 inhibitory peptide (CIP) can specifically inhibit p25/Cdk5 activity in transfected HEK cells and primary cortical neurons. CIP was able to reduce tau hyperphosphorylation and neuronal death induced caused by p25/Cdk5 and further studies with CIP may develop a specific Cdk5 inhibition strategy in the treatment of neurodegeneration.
机译:正常Cdk5活性主要通过与其主要激活剂p35结合而产生,对细胞的正常功能至关重要,必须对其进行严格调节。在神经毒性过程中,p35裂解形成p25,p25成为Cdk5的有效且定位错误的超活化剂,从而导致Cdk5活性失调。已发现在阿尔茨海默氏病(AD)大脑中p25水平升高,而转基因小鼠中p25的过表达导致磷酸化tau,神经原纤维缠结和认知缺陷的形成,这是AD的病理特征。 p25 / Cdk5还使构成神经纤维蛋白的神经丝蛋白过磷酸化,这些蛋白构成帕金森氏病和肌萎缩性侧索硬化症的病理特征。在不影响p35 / Cdk5活性的情况下选择性靶向p25 / Cdk5活性是不成功的。在这篇综述中,我们详细介绍了选择性p25 / Cdk5抑制作用而不影响p35 / Cdk5或有丝分裂Cdk活性的最新研究。我们发现p25的进一步截断以产生Cdk5抑制肽(CIP)可以特异性抑制转染的HEK细胞和原代皮层神经元中的p25 / Cdk5活性。 CIP能够减少p25 / Cdk5引起的tau过度磷酸化和神经元死亡,进一步的研究可能会开发出一种特定的Cdk5抑制策略来治疗神经变性。

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