Orlicky Stephen, Tang Xiaojing, Willems Andrew, Tyers Mike, Sicheri Frank
Program in Molecular Biology and Cancer, Samuel Lunenfeld Research Institute, Mount Sinai Hospital, 600 University Avenue, M5G 1X5, Toronto, Ontario, Canada.
Cell. 2003 Jan 24;112(2):243-56. doi: 10.1016/s0092-8674(03)00034-5.
Cell cycle progression depends on precise elimination of cyclins and cyclin-dependent kinase (CDK) inhibitors by the ubiquitin system. Elimination of the CDK inhibitor Sic1 by the SCFCdc4 ubiquitin ligase at the onset of S phase requires phosphorylation of Sic1 on at least six of its nine Cdc4-phosphodegron (CPD) sites. A 2.7 A X-ray crystal structure of a Skp1-Cdc4 complex bound to a high-affinity CPD phosphopeptide from human cyclin E reveals a core CPD motif, Leu-Leu-pThr-Pro, bound to an eight-bladed WD40 propeller domain in Cdc4. The low affinity of each CPD motif in Sic1 reflects structural discordance with one or more elements of the Cdc4 binding site. Reengineering of Cdc4 to reduce selection against Sic1 sequences allows ubiquitination of lower phosphorylated forms of Sic1. These features account for the observed phosphorylation threshold in Sic1 recognition and suggest an equilibrium binding mode between a single receptor site in Cdc4 and multiple low-affinity CPD sites in Sic1.
细胞周期进程依赖于泛素系统对细胞周期蛋白和细胞周期蛋白依赖性激酶(CDK)抑制剂的精确清除。在S期开始时,SCFCdc4泛素连接酶对CDK抑制剂Sic1的清除需要Sic1九个Cdc4磷酸化降解基序(CPD)位点中至少六个位点的磷酸化。Skp1-Cdc4复合物与来自人细胞周期蛋白E的高亲和力CPD磷酸肽结合的2.7埃X射线晶体结构揭示了一个核心CPD基序Leu-Leu-pThr-Pro,它与Cdc4中的八叶WD40螺旋桨结构域结合。Sic1中每个CPD基序的低亲和力反映了与Cdc4结合位点的一个或多个元件的结构不一致。对Cdc4进行改造以减少对Sic1序列的选择,可使较低磷酸化形式的Sic1发生泛素化。这些特征解释了在Sic1识别中观察到的磷酸化阈值,并提示了Cdc4中单个受体位点与Sic1中多个低亲和力CPD位点之间的平衡结合模式。