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p21破坏细胞周期蛋白依赖性激酶2(cdk2)与E2F-p130复合物之间的相互作用。

p21 Disrupts the interaction between cdk2 and the E2F-p130 complex.

作者信息

Shiyanov P, Bagchi S, Adami G, Kokontis J, Hay N, Arroyo M, Morozov A, Raychaudhuri P

机构信息

Department of Biochemistry, University of Illinois at Chicago, Illinois 60612, USA.

出版信息

Mol Cell Biol. 1996 Mar;16(3):737-44. doi: 10.1128/MCB.16.3.737.

Abstract

In nonproliferating or growth-arrested cells, the transcription factor E2F remains bound to the retinoblastoma-related protein p130. Accumulation of this E2F-p130 complex correlates with an arrest of the cell cycle progression. Progression through G1 phase is associated with a cyclin-dependent binding of the cyclin-dependent kinase cdk2 to the E2F-p130 complex. By fractionating mouse L-cell extracts, we have obtained a partially purified preparation of the E2F-p130 complex that also contains cdk2. Incubation of this complex with recombinant p21 results in a disruption of the interaction between cdk2 and the E2F-p130 complex in extracts of a cell line that expresses a temperature-sensitive mutant of p53. Incubation at the permissive temperature (32 degrees C) results in an induction of p21 synthesis. An increase in the level of p21 in these cells correlates with a loss of cdk2 from the cdk2-containing E2F-p130 complex. We also show that the expression of a reporter gene containing E2F sites in the promoter region is reduced by the coexpression of p21. Since p21 is believed to be a mediator of p53, we speculated that the p21-mediated disruption of the cdk2-containing E2F-p130 complex plays a role in the growth suppression function of p53.

摘要

在非增殖或生长停滞的细胞中,转录因子E2F仍与视网膜母细胞瘤相关蛋白p130结合。这种E2F-p130复合物的积累与细胞周期进程的停滞相关。通过G1期的进程与细胞周期蛋白依赖性激酶cdk2与E2F-p130复合物的细胞周期蛋白依赖性结合有关。通过对小鼠L细胞提取物进行分级分离,我们获得了一种部分纯化的E2F-p130复合物制剂,其中也含有cdk2。将该复合物与重组p21一起孵育,会导致表达p53温度敏感突变体的细胞系提取物中cdk2与E2F-p130复合物之间的相互作用被破坏。在允许温度(32℃)下孵育会导致p21合成的诱导。这些细胞中p21水平的增加与含cdk2的E2F-p130复合物中cdk2的丢失相关。我们还表明,启动子区域含有E2F位点的报告基因的表达会因p21的共表达而降低。由于p21被认为是p53的介导因子,我们推测p21介导的含cdk2的E2F-p130复合物的破坏在p53的生长抑制功能中起作用。

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