Amon A, Irniger S, Nasmyth K
Research Institute of Molecular Pathology, Vienna, Austria.
Cell. 1994 Jul 1;77(7):1037-50. doi: 10.1016/0092-8674(94)90443-x.
It is thought that DNA replication and mitosis in yeast are triggered by oscillations in the level of G1-specific (CLN1 and CLN2) and G2-specific (CLB1-CLB4) cyclins, which determine the substrate specificity of the CDC28 protein kinase. It is not understood how the time and order of appearance of different cyclin types are determined. We show here that CLB2 proteolysis, which is important for transition from mitosis to G1, is not confined to a narrow window at the end of mitosis as previously thought but continues until reactivation of CDC28 by CLN cyclins toward the end of the subsequent G1 period. Thus, cell cycle-regulated proteolysis prevents accumulation of G2-specific CLB cyclins during G1 and thereby ensures that the CLN-associated forms of the CDC28 kinase are activated without interference from CLB cyclins. Accumulation of CLN cyclins leads to inactivation of CLB cyclin proteolysis, which is a precondition for subsequent activation of G2-specific B-type cyclins.
人们认为,酵母中的DNA复制和有丝分裂是由G1期特异性(CLN1和CLN2)和G2期特异性(CLB1 - CLB4)细胞周期蛋白水平的振荡触发的,这些细胞周期蛋白决定了CDC28蛋白激酶的底物特异性。目前尚不清楚不同类型细胞周期蛋白出现的时间和顺序是如何确定的。我们在此表明,对从有丝分裂向G1期转变很重要的CLB2蛋白水解并不局限于有丝分裂末期之前所认为的狭窄窗口,而是持续到随后G1期末期CLN细胞周期蛋白重新激活CDC28为止。因此,细胞周期调控的蛋白水解可防止G1期期间G2期特异性CLB细胞周期蛋白的积累,从而确保CDC28激酶与CLN相关的形式在不受CLB细胞周期蛋白干扰的情况下被激活。CLN细胞周期蛋白的积累导致CLB细胞周期蛋白蛋白水解失活,这是随后激活G2期特异性B型细胞周期蛋白的先决条件。