Feldman R M, Correll C C, Kaplan K B, Deshaies R J
Division of Biology, California Institute of Technology, Pasadena 91125, USA.
Cell. 1997 Oct 17;91(2):221-30. doi: 10.1016/s0092-8674(00)80404-3.
In S. cerevisiae, the G1/S transition requires Cdc4p, Cdc34p, Cdc53p, Skp1p, and the Cln/Cdc28p cyclin-dependent kinase (Cdk). These proteins are thought to promote the proteolytic inactivation of the S-phase Cdk inhibitor Sic1p. We show here that Cdc4p, Cdc53p, and Skp1p assemble into a ubiquitin ligase complex named SCFCdc4p. When mixed together, SCFCdc4p subunits, E1 enzyme, the E2 enzyme Cdc34p, and ubiquitin are sufficient to reconstitute ubiquitination of Cdk-phosphorylated Sic1p. Phosphorylated Sic1p substrate is specifically targeted for ubiquitination by binding to a Cdc4p/Skp1p subcomplex. Taken together, these data illuminate the molecular basis for the G1/S transition in budding yeast and suggest a general mechanism for phosphorylation-targeted ubiquitination in eukaryotes.
在酿酒酵母中,G1/S期转换需要Cdc4p、Cdc34p、Cdc53p、Skp1p以及Cln/Cdc28p细胞周期蛋白依赖性激酶(Cdk)。这些蛋白质被认为可促进S期Cdk抑制剂Sic1p的蛋白水解失活。我们在此表明,Cdc4p、Cdc53p和Skp1p组装成一种名为SCFCdc4p的泛素连接酶复合物。当混合在一起时,SCFCdc4p亚基、E1酶、E2酶Cdc34p和泛素足以重建Cdk磷酸化的Sic1p的泛素化。磷酸化的Sic1p底物通过与Cdc4p/Skp1p亚复合物结合而被特异性靶向泛素化。综上所述,这些数据阐明了芽殖酵母中G1/S期转换的分子基础,并提示了真核生物中磷酸化靶向泛素化的一般机制。