Cyclin A将p33cdk2招募到细胞转录因子DRTF1中。

L R Bandara, J P Adamczewski, M Zamanian, R Y Poon, T Hunt, N B Thangue
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引用次数: 12

摘要

细胞周期蛋白是在每个细胞周期中经历周期性积累和破坏的调节分子。通过激活p34cdc2和相关的激酶亚基,它们控制正常细胞周期进程所需的重要事件。例如,细胞周期蛋白A调节至少两个不同的激酶亚基,即有丝分裂激酶亚基p34cdc2和相关亚基p33cdk2,并且被广泛认为是通过S期进展所必需的。然而,细胞周期蛋白A也与细胞转录因子DRTF1形成稳定的复合物,因此在S期可能具有其他功能。此外,DRTF1与肿瘤抑制视网膜母细胞瘤(Rb)基因产物和Rb相关蛋白p107相关。我们现在表明,使用生物活性融合蛋白,细胞周期蛋白A可以指导cdc2样激酶亚基p33cdk2与含有Rb或p107的复合物DRTF1的结合,并激活其组蛋白H1激酶活性。然而,细胞周期蛋白A不能将p34cdc2引导到DRTF1复合物上,我们提供的证据表明,细胞周期蛋白A-p33cdk2复合物的稳定性受到DRTF1或相关蛋白的影响。因此,Cyclin A作为p33cdk2的激活和靶向亚基。细胞周期蛋白A激活和募集p33cdk2到DRTF1的能力可能在调节细胞周期进程中发挥重要作用,并且定义了一种将细胞周期事件耦合到转录起始的机制。
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Cyclin A recruits p33cdk2 to the cellular transcription factor DRTF1.

Cyclins are regulatory molecules that undergo periodic accumulation and destruction during each cell cycle. By activating p34cdc2 and related kinase subunits they control important events required for normal cell cycle progression. Cyclin A, for example, regulates at least two distinct kinase subunits, the mitotic kinase subunit p34cdc2 and related subunit p33cdk2, and is widely believed to be necessary for progression through S phase. However, cyclin A also forms a stable complex with the cellular transcription factor DRTF1 and thus may perform other functions during S phase. DRTF1, in addition, associates with the tumour suppressor retinoblastoma (Rb) gene product and the Rb-related protein p107. We now show, using biologically active fusion proteins, that cyclin A can direct the binding of the cdc2-like kinase subunit, p33cdk2, to complexed DRTF1, containing either Rb or p107, as well as activate its histone H1 kinase activity. Cyclin A cannot, however, direct p34cdc2 to the DRTF1 complex and we present evidence suggesting that the stability of the cyclin A-p33cdk2 complex is influenced by DRTF1 or an associated protein. Cyclin A, therefore, serves as an activating and targeting subunit of p33cdk2. The ability of cyclin A to activate and recruit p33cdk2 to DRTF1 may play an important role in regulating cell cycle progression and moreover defines a mechanism for coupling cell-cycle events to transcriptional initiation.

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