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用于蛋白质-配体结合的量子力学图谱及其在β-胰蛋白酶/苯甲脒复合物中的应用。

Quantum mechanical map for protein-ligand binding with application to beta-trypsin/benzamidine complex.

作者信息

Zhang Da W, Xiang Yun, Gao Ai M, Zhang John Z H

机构信息

Department of Chemistry, New York University, New York, New York 10003, USA.

出版信息

J Chem Phys. 2004 Jan 15;120(3):1145-8. doi: 10.1063/1.1639152.

Abstract

We report full ab initio Hartree-Fock calculation to compute quantum mechanical interaction energies for beta-trypsin/benzamidine binding complex. In this study, the full quantum mechanical ab initio energy calculation for the entire protein complex with 3238 atoms is made possible by using a recently developed MFCC (molecular fractionation with conjugate caps) approach in which the protein molecule is decomposed into amino acid-based fragments that are properly capped. The present MFCC ab initio calculation enables us to obtain an "interaction spectrum" that provides detailed quantitative information on protein-ligand binding at the amino acid levels. These detailed information on individual residue-ligand interaction gives a quantitative molecular insight into our understanding of protein-ligand binding and provides a guidance to rational design of potential inhibitors of protein targets.

摘要

我们报告了全从头算哈特里-福克计算,以计算β-胰蛋白酶/苯甲脒结合复合物的量子力学相互作用能。在本研究中,通过使用最近开发的MFCC(共轭帽分子片段化)方法,对具有3238个原子的整个蛋白质复合物进行全量子力学从头算能量计算成为可能,该方法将蛋白质分子分解为基于氨基酸的片段,并进行适当的封端。目前的MFCC从头算计算使我们能够获得一个“相互作用谱”,该谱在氨基酸水平上提供了关于蛋白质-配体结合的详细定量信息。这些关于单个残基-配体相互作用的详细信息为我们理解蛋白质-配体结合提供了定量的分子见解,并为合理设计蛋白质靶点的潜在抑制剂提供了指导。

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