Kesavapany S, Lau K F, McLoughlin D M, Brownlees J, Ackerley S, Leigh P N, Shaw C E, Miller C C
Department of Neuroscience, The Institute of Psychiatry, Denmark Hill, London SE5 8AF, UK.
Eur J Neurosci. 2001 Jan;13(2):241-7.
The neuronal cyclin-dependent kinase p35/cdk5 comprises a catalytic subunit (cdk5) and an activator subunit (p35). To identify novel p35/cdk5 substrates, we utilized the yeast two-hybrid system to screen for human p35 binding partners. From one such screen, we identified beta-catenin as an interacting protein. Confirmation that p35 binds to beta-catenin was obtained by using glutathione S-transferase (GST)-beta-catenin fusion proteins that interacted with both endogenous and transfected p35, and by showing that beta-catenin was present in p35 immunoprecipitates. p35 and beta-catenin also displayed overlapping subcellular distribution patterns in cells including neurons. Finally, we demonstrated that p35/cdk5 phosphorylates beta-catenin. beta-catenin also binds to presenilin-1 and altered beta-catenin/presenilin-1 interactions may be mechanistic in Alzheimer's disease (AD). Abnormal p35/cdk5 activity has also been suggested to contribute to AD. We therefore investigated how modulation of p35/cdk5 activity influenced beta-catenin/presenilin-1 interactions. Inhibition of p35/cdk5 with roscovitine did not alter the steady state levels of either beta-catenin or presenilin-1 but reduced the amount of presenilin-1 bound to beta-catenin. Thus, p35/cdk5 binds and phosphorylates beta-catenin and regulates its binding to presenilin-1. The findings reported here therefore provide a novel molecular framework to connect p35/cdk5 with beta-catenin and presenilin-1 in AD.
神经元细胞周期蛋白依赖性激酶p35/cdk5由一个催化亚基(cdk5)和一个激活亚基(p35)组成。为了鉴定新的p35/cdk5底物,我们利用酵母双杂交系统筛选人p35结合伴侣。通过这样一次筛选,我们鉴定出β-连环蛋白是一种相互作用蛋白。利用与内源性和转染的p35都相互作用的谷胱甘肽S-转移酶(GST)-β-连环蛋白融合蛋白,并通过显示β-连环蛋白存在于p35免疫沉淀复合物中,证实了p35与β-连环蛋白结合。p35和β-连环蛋白在包括神经元在内的细胞中也表现出重叠的亚细胞分布模式。最后,我们证明p35/cdk5使β-连环蛋白磷酸化。β-连环蛋白也与早老素-1结合,β-连环蛋白/早老素-1相互作用的改变可能在阿尔茨海默病(AD)中起作用。也有人提出异常的p35/cdk5活性促成AD。因此,我们研究了p35/cdk5活性的调节如何影响β-连环蛋白/早老素-1的相互作用。用roscovitine抑制p35/cdk5并没有改变β-连环蛋白或早老素-1的稳态水平,但减少了与β-连环蛋白结合的早老素-1的量。因此,p35/cdk5结合并磷酸化β-连环蛋白,并调节其与早老素-1的结合。因此,本文报道的研究结果提供了一个将p35/cdk5与AD中的β-连环蛋白和早老素-1联系起来的新分子框架。