Morris M C, Heitz F, Divita G
Centre de Recherches de Biochimie Macromoleculaire, CNRS, Montpellier, France.
Biochemistry. 1998 Oct 6;37(40):14257-66. doi: 10.1021/bi980913u.
The impact of p13suc1 on the conformation and regulation of cyclin-dependent kinases (cdks) and cyclins was investigated by spectroscopic and rapid kinetic approaches. In the absence of phosphorylation on cdks, p13suc1 formed stable complexes, mainly stabilized by hydrophobic interactions, specifically with cdk2 and cdc2. The presence of cyclin A, associated with cdk2 or cdc2, increased the stability of the interaction between cdk2 and p13suc1 by a factor of 2. However, cyclin A did not modify the association rate of p13suc1 to cdk2, but the dissociation rate, which was decreased 3-fold. Moreover, binding of p13suc1 to cdk2 resulted in a 2-fold decrease in the release of nucleotide from cdk2, indicating that p13suc1 induces a marked change in the structure of the nucleotide binding site of cdks. On the basis of the structure of cdk2/CksHs1 complex and on our kinetic results, we propose that the binding of Cks proteins to C-lobe of cdk2 is stabilized by the presence of cyclin A and that it may modify the orientation of the loop carrying residues 14 and 15 and their consequent access for dephosphorylation by cdc25 phosphatases. Finally, we have shown that dimerization of p13suc1 in the presence of zinc abolishes its interaction with cdks, which suggests that the binding of p13suc1 to cdk2 or cdk2/cyclin A may be regulated by dimerization of p13suc1 in vivo.
通过光谱学和快速动力学方法研究了p13suc1对细胞周期蛋白依赖性激酶(cdks)和细胞周期蛋白的构象及调节的影响。在cdks未发生磷酸化的情况下,p13suc1形成稳定复合物,主要通过疏水相互作用稳定,特别是与cdk2和cdc2形成复合物。与cdk2或cdc2相关联的细胞周期蛋白A的存在,使cdk2与p13suc1之间相互作用的稳定性提高了2倍。然而,细胞周期蛋白A并未改变p13suc1与cdk2的结合速率,但使解离速率降低了3倍。此外,p13suc1与cdk2的结合导致cdk2中核苷酸释放减少2倍,这表明p13suc1诱导了cdks核苷酸结合位点结构的显著变化。基于cdk2/CksHs1复合物的结构以及我们的动力学结果,我们提出Cks蛋白与cdk2的C叶结合通过细胞周期蛋白A的存在而稳定,并且它可能改变携带14和15位残基的环的方向以及它们随后被cdc25磷酸酶去磷酸化的可及性。最后,我们已经表明在锌存在下p13suc1的二聚化消除了其与cdks的相互作用,这表明p13suc1与cdk2或cdk2/细胞周期蛋白A的结合可能在体内通过p13suc1的二聚化来调节。