Kaiser P, Moncollin V, Clarke D J, Watson M H, Bertolaet B L, Reed S I, Bailly E
The Scripps Research Institute, MB7, La Jolla, California 92037, USA.
Genes Dev. 1999 May 1;13(9):1190-202. doi: 10.1101/gad.13.9.1190.
Cell cycle-specific proteolysis is critical for proper execution of mitosis in all eukaryotes. Ubiquitination and subsequent proteolysis of the mitotic regulators Clb2 and Pds1 depend on the cyclosome/APC and the 26S proteasome. We report here that components of the cell cycle machinery in yeast, specifically the cell cycle regulatory cyclin-dependent kinase Cdc28 and a conserved associated protein Cks1/Suc1, interact genetically, physically, and functionally with components of the 26S proteasome. A mutation in Cdc28 (cdc28-1N) that interferes with Cks1 binding, or inactivation of Cks1 itself, confers stabilization of Clb2, the principal mitotic B-type cyclin in budding yeast. Surprisingly, Clb2-ubiquitination in vivo and in vitro is not affected by mutations in cks1, indicating that Cks1 is not essential for cyclosome/APC activity. However, mutant Cks1 proteins no longer physically interact with the proteasome, suggesting that Cks1 is required for some aspect of proteasome function during M-phase-specific proteolysis. We further provide evidence that Cks1 function is required for degradation of the anaphase inhibitor Pds1. Stabilization of Pds1 is partially responsible for the metaphase arrest phenotype of cks1 mutants because deletion of PDS1 partially relieves the metaphase block in these mutants.
细胞周期特异性蛋白水解对于所有真核生物有丝分裂的正常进行至关重要。有丝分裂调节因子Clb2和Pds1的泛素化及随后的蛋白水解依赖于细胞周期体/后期促进复合物(APC)和26S蛋白酶体。我们在此报告,酵母细胞周期机制的组分,特别是细胞周期调节性细胞周期蛋白依赖性激酶Cdc28和一种保守的相关蛋白Cks1/Suc1,在遗传、物理和功能上与26S蛋白酶体的组分相互作用。干扰Cks1结合的Cdc28突变(cdc28-1N)或Cks1自身的失活会导致芽殖酵母中主要的有丝分裂B型细胞周期蛋白Clb2的稳定。令人惊讶的是,体内和体外的Clb2泛素化不受cks1突变的影响,这表明Cks1对于细胞周期体/APC的活性不是必需的。然而,突变的Cks1蛋白不再与蛋白酶体发生物理相互作用,这表明在M期特异性蛋白水解过程中,Cks1对于蛋白酶体功能的某些方面是必需的。我们进一步提供证据表明,Cks1功能对于后期抑制因子Pds1的降解是必需的。Pds1的稳定部分导致了cks1突变体的中期阻滞表型,因为删除PDS1可部分缓解这些突变体中的中期阻滞。