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首页> 外文期刊>Chemistry: A European journal >Interaction energies for the purine inhibitor roscovitine with cyclin-dependent kinase 2: Correlated ab initio quantum-chemical, DFT and empirical calculations
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Interaction energies for the purine inhibitor roscovitine with cyclin-dependent kinase 2: Correlated ab initio quantum-chemical, DFT and empirical calculations

机译:嘌呤抑制剂roscovitine与细胞周期蛋白依赖性激酶2的相互作用能:相关的从头算量子化学,DFT和经验计算

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The interaction between roscovitine and cyclin-dependent kinase 2 (cdk2) was investigated by performing correlated ab initio quantum-chemical calculations. The whole protein was fragmented into smaller systems consisting of one or a few amino acids, and the interaction energies of these fragments with roscovitine were determined by using the MP2 method with the extended aug-cc-pVDZ basis set. For selected complexes, the complete basis set limit MP2 interaction energies, as well as the coupled-cluster corrections with inclusion of single, double and noninteractive triples contributions [CCSD(T)], were also evaluated. The energies of interaction between roscovitine and small fragments and between roscovitine and substantial sections of protein (722 atoms) were also computed by using density-functional tight-binding methods covering dispersion energy (DFTB-D) and the Cornell empirical potential. Total stabilisation energy originates predominantly from dispersion energy and methods that do not account for the dispersion energy cannot, therefore, be recommended for the study of protein-inhibitor interactions. The Cornell empirical potential describes reasonably well the interaction between roscovitine and protein; therefore, this method can be applied in future thermodynamic calculations. A limited number of amino acid residues contribute significantly to the binding of roscovitine and cdk2, whereas a rather large number of amino acids make a negligible contribution.
机译:通过执行相关的从头算量子化学计算,研究了roscovitine与细胞周期蛋白依赖性激酶2(cdk2)之间的相互作用。整个蛋白质被片段化为由一个或几个氨基酸组成的较小系统,这些片段与roscovitine的相互作用能通过使用带有扩展的aug-cc-pVDZ基础集的MP2方法确定。对于选定的配合物,还评估了完整的基集极限MP2相互作用能,以及包括单个,双重和非相互作用三重贡献[CCSD(T)]的耦合簇校正。还使用覆盖分散能(DFTB-D)和康奈尔经验势的密度泛函紧密结合方法计算了roscovitine与小片段之间以及roscovitine与蛋白质的实质部分(722个原子)之间的相互作用能。总稳定能主要来自分散能,因此不能推荐不考虑分散能的方法进行蛋白质-抑制剂相互作用的研究。康奈尔(Cornell)的经验潜力很好地描述了roscovitine与蛋白质之间的相互作用。因此,该方法可用于将来的热力学计算。有限数量的氨基酸残基显着促进了roscovitine与cdk2的结合,而相当数量的氨基酸则贡献很小。

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