Nguyen H, Gitig D M, Koff A
Program in Molecular Biology and Cell Biology and Genetics, Cornell University Graduate School of Medical Sciences, New York, New York 10021, USA.
Mol Cell Biol. 1999 Feb;19(2):1190-201. doi: 10.1128/MCB.19.2.1190.
Entry into S phase is dependent on the coordinated activation of CDK4,6 and CDK2 kinases. Once a cell commits to S phase, there must be a mechanism to ensure the irreversibility of this decision. The activity of these kinases is inhibited by their association with p27. In many cells, p27 plays a major role in the withdrawal from the cell cycle in response to environmental cues. Thus, it is likely that p27 is a target of the machinery required to ensure the irreversibility of S-phase entry. We have been interested in understanding the mechanisms regulating p27 at the G1/S transition. In this report, we define a cell-free degradation system which faithfully recapitulates the cell cycle phase-specific degradation of p27. We show that this reaction is dependent on active CDK2 activity, suggesting that CDK2 activity is directly required for p27 degradation. In addition to CDK2, other S-phase-specific factors are required for p27 degradation. At least some of these factors are ubiquitin and proteasome dependent. We discuss the relationships between CDK2 activity, ubiquitin-dependent, and possibly ubiquitin-independent proteasomal activities in S-phase extracts as related to p27.
进入S期依赖于CDK4、6和CDK2激酶的协同激活。一旦细胞进入S期,必须有一种机制来确保这一决定的不可逆转性。这些激酶的活性因其与p27的结合而受到抑制。在许多细胞中,p27在响应环境信号退出细胞周期过程中起主要作用。因此,p27很可能是确保进入S期不可逆转性所需机制的一个靶点。我们一直致力于了解在G1/S转换时调节p27的机制。在本报告中,我们定义了一个无细胞降解系统,该系统忠实地概括了p27的细胞周期阶段特异性降解。我们表明,该反应依赖于活性CDK2活性,这表明CDK2活性是p
27降解直接所需的。除了CDK2,p27降解还需要其他S期特异性因子。这些因子中至少有一些是依赖泛素和蛋白酶体的。我们讨论了S期提取物中CDK2活性、泛素依赖性以及可能的泛素非依赖性蛋白酶体活性与p27之间的关系。