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首页> 外文期刊>International Journal of Quantum Chemistry >ONIOM Study of the Nonbonding Interaction of the 2PU Inhibitor With the CDK2 and CDK4 Cyclin-Dependant Kinases
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ONIOM Study of the Nonbonding Interaction of the 2PU Inhibitor With the CDK2 and CDK4 Cyclin-Dependant Kinases

机译:ONIOM研究2PU抑制剂与CDK2和CDK4细胞周期蛋白依赖性激酶的非键相互作用

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We discuss in this article, the applicability of hybrid techniques [especially the our-own N-layered integrated molecular orbital and molecular mechanics (ONIOM) method] to weak chemical interactions in large systems, such as the interaction of cyclin-dependant kinases, CDK4, and CDK2, with a specific ligand (2PU) showing selectivity for CDK4. Our results show that the energies from the ONIOM calculations perfectly match our former molecular dynamics results, both for determining the amino acids which have strongest interactions with the ligand and for explaining the selectivity of 2PU towards CDK4, as compared with CDK2. We show that the ONIOM method is a good candidate for studying such interactions in large systems, even though there are still some technical and theoretical problems to solve. The calculation details will be presented together with the methodology we devised for using the ONIOM approach in such a context. (C) 2008 Wiley Periodicals, Inc. Int Quantum Chem 109: 1148-1157, 2009
机译:我们将在本文中讨论混合技术(特别是我们自己的N层集成分子轨道和分子力学(ONIOM)方法)在大型系统中弱化学相互作用(例如细胞周期蛋白依赖性激酶CDK4相互作用)的适用性,CDK2和CDK2,并具有对CDK4具有选择性的特异性配体(2PU)。我们的结果表明,ONIOM计算得出的能量与我们以前的分子动力学结果完全吻合,既可以确定与配体相互作用最强的氨基酸,又可以解释2PU与CDK2相比对CDK4的选择性。我们表明,即使仍然存在一些技术和理论问题需要解决,ONIOM方法还是研究大型系统中此类相互作用的理想选择。计算细节将与在这种情况下使用ONIOM方法设计的方法一起介绍。 (C)2008 Wiley Periodicals,Inc.国际量子化学109:1148-1157,2009

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