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用于结构辅助药物设计的核磁共振光谱工具。

NMR spectroscopy tools for structure-aided drug design.

作者信息

Homans Steve W

机构信息

School of Biochemistry and Molecular Biology, University of Leeds, Leeds, LS2 9JT, UK.

出版信息

Angew Chem Int Ed Engl. 2004 Jan 3;43(3):290-300. doi: 10.1002/anie.200300581.

Abstract

Biomolecular NMR spectroscopy has expanded dramatically in recent years and is now a powerful tool for the study of structure, dynamics, and interactions of biomolecules. Previous limitations with respect to molecular size are no longer a primary barrier, and systems as large as 900 kDa were recently studied. NMR spectroscopy is already well-established as an efficient method for ligand screening. A number of recently developed techniques show promise as aids in structure-based drug design, for example, in the rapid determination of global protein folds, the structural characterization of ligand-protein complexes, and the derivation of thermodynamic parameters. An advantage of the method is that all these interactions can be studied in solution--time-consuming crystallization is not necessary. This Review focuses on recent developments in NMR spectroscopy and how they might be of value in removing some of the current "bottlenecks" in structure-based drug discovery.

摘要

近年来,生物分子核磁共振光谱学得到了极大的发展,如今已成为研究生物分子结构、动力学和相互作用的强大工具。以往在分子大小方面的限制已不再是主要障碍,最近对高达900 kDa的系统进行了研究。核磁共振光谱学作为一种有效的配体筛选方法已经得到了广泛认可。一些最近开发的技术有望辅助基于结构的药物设计,例如,快速确定整体蛋白质折叠、配体-蛋白质复合物的结构表征以及推导热力学参数。该方法的一个优点是所有这些相互作用都可以在溶液中进行研究,无需耗时的结晶过程。本综述重点关注核磁共振光谱学的最新进展以及它们如何有助于消除当前基于结构的药物发现中的一些“瓶颈”。

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