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Phosphorylation independent activation of human cyclin-dependent kinase 2 by cyclin A in vitro.

机译:在体外,细胞周期蛋白A对人细胞周期蛋白依赖性激酶2的磷酸化独立激活。

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p33cdk2 is a serine-threonine protein kinase that associates with cyclins A, D, and E and has been implicated in the control of the G1/S transition in mammalian cells. Recent evidence indicates that cyclin-dependent kinase 2 (Cdk2), like its homolog Cdc2, requires cyclin binding and phosphorylation (of threonine-160) for activation in vivo. However, the extent to which mechanistic details of the activation process are conserved between Cdc2 and Cdk2 is unknown. We have developed bacterial expression and purification systems for Cdk2 and cyclin A that allow mechanistic studies of the activation process to be performed in the absence of cell extracts. Recombinant Cdk2 is essentially inactive as a histone H1 kinase (< 4 x 10(-5) pmol phosphate transferred.min-1 x microgram-1 Cdk2). However, in the presence of equimolar cyclin A, the specific activity is approximately 16 pmol.mon-1 x microgram-1, 4 x 10(5)-fold higher than Cdk2 alone. Mutation of T160 in Cdk2 to either alanine or glutamic acid had little impact on the specific activity of the Cdk2/cyclin A complex: the activity of Cdk2T160E was indistinguishable from Cdk2, whereas that of Cdk2T160A was reduced by five-fold. To determine if the Cdk2/cyclin A complex could be activated further by phosphorylation of T160, complexes were treated with Cdc2 activating kinase (CAK), purified approximately 12,000-fold from Xenopus eggs. This treatment resulted in an 80-fold increase in specific activity. This specific activity is comparable with that of the Cdc2/cyclin B complex after complete activation by CAK (approximately 1600 pmol.mon-1 x microgram-1). Neither Cdk2T160A/cyclin A nor Cdk2T160E/cyclin A complexes were activated further by treatment with CAK. In striking contrast with cyclin A, cyclin B did not directly activate Cdk2. However, both Cdk2/cyclin A and Cdk2/cyclin B complexes display similar activity after activation by CAK. For the Cdk2/cyclin A complex, both cyclin binding and phosphorylation contribute significantly to activation, although the energetic contribution of cyclin A binding is greater than that of T160 phosphorylation by approximately 5 kcal/mol. The potential significance of direct activation of Cdk2 by cyclins with respect to regulation of cell cycle progression is discussed.
机译:p33cdk2是一种丝氨酸-苏氨酸蛋白激酶,与细胞周期蛋白A,D和E缔合,并参与了哺乳动物细胞中G1 / S过渡的控制。最近的证据表明,细胞周期蛋白依赖性激酶2(Cdk2)与其同系物Cdc2一样,需要细胞周期蛋白结合和(苏氨酸160的)磷酸化才能在体内激活。但是,在Cdc2和Cdk2之间保留激活过程的机械细节的程度尚不清楚。我们已经开发了Cdk2和细胞周期蛋白A的细菌表达和纯化系统,可以在没有细胞提取物的情况下进行激活过程的机理研究。重组Cdk2作为组蛋白H1激酶(<4 x 10(-5)pmol磷酸转移的min-1 x microgram-1 Cdk2)基本上没有活性。但是,在存在等摩尔细胞周期蛋白A的情况下,比活性约为16 pmol.mon-1 x微克-1,比单独的Cdk2高4 x 10(5)倍。 Cdk2中的T160突变为丙氨酸或谷氨酸对Cdk2 / cyclin A复合物的比活性几乎没有影响:Cdk2T160E的活性与Cdk2不可区分,而Cdk2T160A的活性降低了五倍。为了确定Cdk2 / cyclin A复合物是否可以通过T160的磷酸化进一步激活,将复合物用Cdc2活化激酶(CAK)处理,并从非洲爪蟾卵中纯化了约12,000倍。该处理导致比活性增加了80倍。经过CAK完全激活后,该比活与Cdc2 / cyclin B复合物的活度相当(约1600 pmol.mon-1 x microgram-1)。通过用CAK处理,Cdk2T160A /细胞周期蛋白A和Cdk2T160E /细胞周期蛋白A复合物都没有被进一步激活。与细胞周期蛋白A形成鲜明对比的是,细胞周期蛋白B没有直接激活Cdk2。但是,Cadk2 / cyclin A和Cdk2 / cyclin B复合物在通过CAK激活后均显示相似的活性。对于Cdk2 / cyclin A复合物,虽然cyclin A结合的能量贡献比T160磷酸化的能量贡献大约5 kcal / mol,但cyclin结合和磷酸化作用均显着促进活化。讨论了细胞周期蛋白调控细胞周期蛋白直接激活Cdk2的潜在意义。

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