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交换转移核Overhauser效应光谱法与结合配体结构测定

Exchange-transferred NOE spectroscopy and bound ligand structure determination.

作者信息

Post Carol Beth

机构信息

Department of Medicinal Chemistry, 575 Stadium Mall Drive, Purdue University, West Lafayette, IN 47907-2091, USA.

出版信息

Curr Opin Struct Biol. 2003 Oct;13(5):581-8. doi: 10.1016/j.sbi.2003.09.012.

Abstract

The exchange-transferred nuclear Overhauser effect of NMR spectroscopy provides information on small-molecule ligands in association with high-molecular-weight proteins or nucleic acids, or with biomolecular assemblies such as membranes. The method has proved particularly useful for the structural analysis of proton-rich, flexible ligands and for screening mixtures of ligands for binding activity. Recent analysis has established the accuracy of bound peptide structures determined from transferred nuclear Overhauser effect data and that intermolecular spin diffusion effects do not diminish the reliability of the structural result. New applications of the method involve systems of greater complexity, such as membrane-bound receptors and ribosomes. In addition, new experiments have been developed that exploit the transfer of other types of NMR signal (saturation, cross-correlation, dipolar coupling) to obtain structural information.

摘要

核磁共振光谱的交换转移核Overhauser效应可提供与高分子量蛋白质或核酸,或与生物分子聚集体(如膜)结合的小分子配体的信息。该方法已被证明对富含质子的柔性配体的结构分析以及筛选具有结合活性的配体混合物特别有用。最近的分析确定了从转移核Overhauser效应数据确定的结合肽结构的准确性,并且分子间自旋扩散效应不会降低结构结果的可靠性。该方法的新应用涉及更复杂的系统,如膜结合受体和核糖体。此外,还开发了利用其他类型的NMR信号转移(饱和、交叉相关、偶极耦合)来获取结构信息的新实验。

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