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Substrate Targeting of the Yeast Cyclin-Dependent Kinase Pho85p by the Cyclin Pcl10p

机译:Cyclin Pcl10p对酵母细胞周期蛋白依赖性激酶Pho85p的底物靶向

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摘要

In Saccharomyces cerevisiae, PHO85 encodes a cyclin-dependent protein kinase (Cdk) catalytic subunit with multiple regulatory roles thought to be specified by association with different cyclin partners (Pcls). Pcl10p is one of four Pcls with little sequence similarity to cyclins involved in cell cycle control. It has been implicated in specifying the phosphorylation of glycogen synthase (Gsy2p). We report that recombinant Pho85p and Pcl10p produced in Escherichia coli reconstitute an active Gsy2p kinase in vitro. Gsy2p phosphorylation required Pcl10p, occurred at physiologically relevant sites, and resulted in inactivation of Gsy2p. The activity of the reconstituted enzyme was even greater than Pho85p-Pcl10p isolated from yeast, and we conclude that, unlike many Cdks, Pho85p does not require phosphorylation for activity. Pcl10p formed complexes with Gsy2p, as judged by (i) gel filtration of recombinant Pcl10p and Gsy2p, (ii) coimmunoprecipitation from yeast cell lysates, and (iii) enzyme kinetic behavior consistent with Pcl10p binding the substrate. Synthetic peptides modeled on the sequences of known Pho85p sites were poor substrates with high Km values, and we propose that Pcl10p-Gsy2p interaction is important for substrate selection. Gel filtration of yeast cell lysates demonstrated that most Pho85p was present as a monomer, although a portion coeluted in high-molecular-weight fractions with Pcl10p and Gsy2p. Overexpression of Pcl10p sequestered most of the Pho85p into association with Pcl10p. We suggest a model for Pho85p function in the cell whereby cyclins like Pcl10p recruit Pho85p from a pool of monomers, both activating the kinase and targeting it to substrate.
机译:在酿酒酵母中,PHO85编码具有多种调节作用的细胞周期蛋白依赖性蛋白激酶(Cdk)催化亚基,据认为是通过与不同细胞周期蛋白伴侣(Pcls)结合来确定的。 Pcl10p是四个Pcls之一,与细胞周期控制中涉及的细胞周期蛋白序列相似性很小。已经暗示了糖原合酶(Gsy2p)的磷酸化。我们报告说,在大肠杆菌中产生的重组Pho85p和Pcl10p重组了体外的活性Gsy2p激酶。 Gsy2p磷酸化需要Pcl10p,发生在生理相关部位,并导致Gsy2p失活。重组酶的活性甚至比从酵母中分离出的Pho85p-Pcl10p更高,并且我们得出的结论是,与许多Cdks不同,Pho85p不需要磷酸化即可获得活性。通过(i)重组Pcl10p和Gsy2p的凝胶过滤,(ii)酵母细胞裂解液的共免疫沉淀和(iii)与Pcl10p结合底物一致的酶动力学行为,可以判断Pcl10p与Gsy2p形成复合物。在已知Pho85p位点序列上建模的合成肽是较差的底物,具有高Km值,我们提出Pcl10p-Gsy2p相互作用对于底物选择很重要。酵母细胞裂解物的凝胶过滤表明,大多数Pho85p作为单体存在,尽管一部分与Pcl10p和Gsy2p在高分子量馏分中共洗脱。 Pcl10p的过表达使大多数Pho85p都与Pcl10p结合。我们建议细胞中Pho85p功能的模型,从而使细胞周期蛋白(如Pcl10p)从单体池中募集Pho85p,既激活激酶又将其靶向底物。

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