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使用STD NMR强度受限的CORCEMA优化方法对与半乳糖基转移酶结合的UDP-半乳糖的构象进行优化。

Refinement of the conformation of UDP-galactose bound to galactosyltransferase using the STD NMR intensity-restrained CORCEMA optimization.

作者信息

Jayalakshmi V, Biet Thorsten, Peters Thomas, Krishna N Rama

机构信息

Department of Biochemistry and Molecular Genetics, Comprehensive Cancer Center, University of Alabama at Birmingham, Birmingham, Alabama 35294-2041, USA.

出版信息

J Am Chem Soc. 2004 Jul 21;126(28):8610-1. doi: 10.1021/ja048703u.

Abstract

The STD NMR technique has originally been described as a tool for screening large compound libraries to identify the lead compounds that are specific to target proteins of interest. The application of this technique in the qualitative epitope mapping of ligands weakly binding to proteins, virus capsid shells, and nucleic acids has also been described. Here we describe the application of the STD NMR intensity-restrained CORCEMA optimization (SICO) procedure for refining the bound conformation of UDP-galactose in galactosyltransferase complex using STD NMR intensities recorded at 500 MHz as the experimental constraints. A comparison of the SICO structure for the bound UDP-galactose in solution with that in the crystal structure for this complex shows some differences in ligand torsion angles and V253 side-chain orientation in the protein. This work describes the first application of an STD NMR intensity-restrained CORCEMA optimization procedure for refining the torsion angles of a bound ligand structure. This method is likely to be useful in structure-based drug design programs since most initial lead compounds generally exhibit weak affinity (millimolar to micromolar) to target proteins of pharmaceutical interest, and the bound conformation of these lead compounds in the protein binding pocket can be determined by the CORCEMA-ST refinement.

摘要

STD NMR技术最初被描述为一种用于筛选大型化合物库以鉴定对感兴趣的靶蛋白具有特异性的先导化合物的工具。该技术在弱结合蛋白质、病毒衣壳和核酸的配体的定性表位图谱绘制中的应用也已有报道。在此,我们描述了STD NMR强度约束的CORCEMA优化(SICO)程序的应用,该程序使用在500 MHz记录的STD NMR强度作为实验约束来优化半乳糖基转移酶复合物中UDP-半乳糖的结合构象。溶液中结合的UDP-半乳糖的SICO结构与该复合物晶体结构中的结构比较表明,配体扭转角和蛋白质中V253侧链取向存在一些差异。这项工作描述了STD NMR强度约束的CORCEMA优化程序在优化结合配体结构扭转角方面的首次应用。这种方法在基于结构的药物设计程序中可能很有用,因为大多数初始先导化合物通常对具有药物意义的靶蛋白表现出弱亲和力(毫摩尔至微摩尔),并且这些先导化合物在蛋白质结合口袋中的结合构象可以通过CORCEMA-ST精修来确定。

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