Richardson H E, Wittenberg C, Cross F, Reed S I
Department of Molecular Biology, Research Institute of Scripps Clinic, La Jolla, California 92037.
Cell. 1989 Dec 22;59(6):1127-33. doi: 10.1016/0092-8674(89)90768-x.
Cyclins were discovered in marine invertebrates based on their dramatic cell cycle periodicity. Recently, the products of three genes associated with cell cycle progression in S. cerevisiae were found to share limited homology with cyclins. Mutational elimination of the CLN1, CLN2, and DAF1/WHI1 products leads to cell cycle arrest independent of cell type, while expression of any one of the genes allows cell proliferation. Using strains where CLN1 was expressed conditionally, the essential function of Cln proteins was found to be limited to the G1 phase. Furthermore, the ability of the Cln proteins to carry out this function was found to decay rapidly upon cessation of Cln biosynthesis. The data are consistent with the hypothesis that Cln proteins activate the Cdc28 protein kinase, shown to be essential for the G1 to S phase transition in S. cerevisiae. Because of the apparent functional redundancy of these genes, DAF1/WHI1 has been renamed CLN3.
细胞周期蛋白是在海洋无脊椎动物中基于其显著的细胞周期周期性而被发现的。最近,发现酿酒酵母中与细胞周期进程相关的三个基因的产物与细胞周期蛋白具有有限的同源性。CLN1、CLN2和DAF1/WHI1产物的突变消除导致细胞周期停滞,且与细胞类型无关,而任何一个基因的表达都能使细胞增殖。使用CLN1条件性表达的菌株,发现Cln蛋白的基本功能仅限于G1期。此外,发现Cln蛋白执行此功能的能力在Cln生物合成停止后迅速衰退。这些数据与Cln蛋白激活Cdc28蛋白激酶的假设一致,Cdc28蛋白激酶对酿酒酵母从G1期到S期的转变至关重要。由于这些基因明显的功能冗余,DAF1/WHI1已被重新命名为CLN3。