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人免疫球蛋白G恒定片段共有结合位点处肽识别的蒙特卡罗模拟:分子间界面热点的能量景观分析

Monte Carlo simulations of the peptide recognition at the consensus binding site of the constant fragment of human immunoglobulin G: the energy landscape analysis of a hot spot at the intermolecular interface.

作者信息

Verkhivker Gennady M, Bouzida Djamal, Gehlhaar Daniel K, Rejto Paul A, Freer Stephan T, Rose Peter W

机构信息

Agouron Pharmaceuticals, Inc., Department of Computational Chemistry, Pfizer Company, San Diego, California 92121-1111, USA.

出版信息

Proteins. 2002 Aug 15;48(3):539-57. doi: 10.1002/prot.10164.

Abstract

Monte Carlo simulations of molecular recognition at the consensus binding site of the constant fragment (Fc) of human immunoglobulin G (Ig) protein have been performed to analyze structural and thermodynamic aspects of binding for the 13-residue cyclic peptide DCAWHLGELVWCT. The energy landscape analysis of a hot spot at the intermolecular interface using alanine scanning and equilibrium-simulated tempering dynamics with the simplified, knowledge-based energy function has enabled the role of the protein hot spot residues in providing the thermodynamic stability of the native structure to be determined. We have found that hydrophobic interactions between the peptide and the Met-252, Ile-253, His-433, and His-435 protein residues are critical to guarantee the thermodynamic stability of the crystallographic binding mode of the complex. Binding free energy calculations, using a molecular mechanics force field and a solvation energy model, combined with alanine scanning have been conducted to determine the energetic contribution of the protein hot spot residues in binding affinity. The conserved Asn-434, Ser-254, and Tyr-436 protein residues contribute significantly to the binding affinity of the peptide-protein complex, serving as an energetic hot spot at the intermolecular interface. The results suggest that evolutionary conserved hot spot protein residues at the intermolecular interface may be partitioned in fulfilling thermodynamic stability of the native binding mode and contributing to the binding affinity of the complex.

摘要

已对人免疫球蛋白G(Ig)蛋白恒定片段(Fc)的共有结合位点处的分子识别进行了蒙特卡罗模拟,以分析13个残基的环肽DCAWHLGELVWCT结合的结构和热力学方面。使用丙氨酸扫描和基于简化的、基于知识的能量函数的平衡模拟回火动力学对分子间界面处的热点进行能量景观分析,从而确定了蛋白质热点残基在提供天然结构热力学稳定性方面的作用。我们发现,肽与蛋白质残基Met-252、Ile-253、His-433和His-435之间的疏水相互作用对于保证复合物晶体学结合模式的热力学稳定性至关重要。使用分子力学力场和溶剂化能量模型结合丙氨酸扫描进行了结合自由能计算,以确定蛋白质热点残基对结合亲和力的能量贡献。保守的蛋白质残基Asn-434、Ser-254和Tyr-436对肽-蛋白质复合物的结合亲和力有显著贡献,在分子间界面处作为一个能量热点。结果表明,分子间界面处进化保守的热点蛋白质残基可能在实现天然结合模式的热力学稳定性和促进复合物的结合亲和力方面发挥作用。

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