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细胞周期蛋白依赖性激酶2的调节性磷酸化:来自分子动力学模拟的见解

Regulatory phosphorylation of cyclin-dependent kinase 2: insights from molecular dynamics simulations.

作者信息

Bártová Iveta, Koca Jaroslav, Otyepka Michal

机构信息

Department of Physical Chemistry and Centre for Biomolecular and Complex Molecular Systems, Palacký University, tr. Svobody 26, 771 46, Olomouc, Czech Republic.

出版信息

J Mol Model. 2008 Aug;14(8):761-8. doi: 10.1007/s00894-008-0312-1. Epub 2008 May 10.

Abstract

The structures of fully active cyclin-dependent kinase-2 (CDK2) complexed with ATP and peptide substrate, CDK2 after the catalytic reaction, and CDK2 inhibited by phosphorylation at Thr14/Tyr15 were studied using molecular dynamics (MD) simulations. The structural details of the CDK2 catalytic site and CDK2 substrate binding box were described. Comparison of MD simulations of inhibited complexes of CDK2 was used to help understand the role of inhibitory phosphorylation at Thr14/Tyr15. Phosphorylation at Thr14/Tyr15 causes ATP misalignment for the phosphate-group transfer, changes in the Mg(2+) coordination sphere, and changes in the H-bond network formed by CDK2 catalytic residues (Asp127, Lys129, Asn132). The inhibitory phosphorylation causes the G-loop to shift from the ATP binding site, which leads to opening of the CDK2 substrate binding box, thus probably weakening substrate binding. All these effects explain the decrease in kinase activity observed after inhibitory phosphorylation at Thr14/Tyr15 in the G-loop. Interaction of the peptide substrate, and the phosphorylated peptide product, with CDK2 was also studied and compared. These results broaden hypotheses drawn from our previous MD studies as to why a basic residue (Arg/Lys) is preferred at the P(+2) substrate position.

摘要

利用分子动力学(MD)模拟研究了与ATP和肽底物复合的完全活性细胞周期蛋白依赖性激酶2(CDK2)的结构、催化反应后的CDK2以及在Thr14/Tyr15处磷酸化抑制的CDK2。描述了CDK2催化位点和CDK2底物结合盒的结构细节。通过比较CDK2抑制复合物的MD模拟,有助于理解Thr14/Tyr15处抑制性磷酸化的作用。Thr14/Tyr15处的磷酸化导致ATP在磷酸基团转移时错位、Mg(2+)配位球的变化以及由CDK2催化残基(Asp127、Lys129、Asn132)形成的氢键网络的变化。抑制性磷酸化导致G环从ATP结合位点移位,从而导致CDK2底物结合盒打开,进而可能削弱底物结合。所有这些效应解释了在G环中Thr14/Tyr15处抑制性磷酸化后观察到的激酶活性降低。还研究并比较了肽底物和磷酸化肽产物与CDK2的相互作用。这些结果拓宽了我们之前MD研究得出的关于为什么在P(+2)底物位置优先选择碱性残基(Arg/Lys)的假设。

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