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固态核磁共振结构测定

Solid-state NMR structure determination.

作者信息

Drechsler Alison, Separovic Frances

机构信息

School of Chemistry, University of Melbourne, Melbourne, Vic 3010, Australia.

出版信息

IUBMB Life. 2003 Sep;55(9):515-23. doi: 10.1080/15216540310001622740.

Abstract

Biological applications of solid-state NMR (SS-NMR) have been predominantly in the area of model membrane systems. Increasingly the focus has been membrane peptides and proteins. SS-NMR is able to provide information about how the peptides or proteins interact with the lipids or other peptides/proteins in the membrane, their effect on the membrane and the location of the peptides or proteins relative to the membrane surface. Recent developments in biological SS-NMR have been made possible by improvements in labelling and NMR techniques. This review discusses aligned systems and magic angle spinning techniques, bilayers and bicelles, and measurement of chemical shift anisotropy and dipolar coupling. A number of specific experiments such as cross polarization, rotational resonance, REDOR, PISEMA, MAOSS and multidimensional experiments are described. In addition to 2H, 13C and 15N, recent solid-sate 1H, 19F and 17O NMR work is discussed. Several examples of the use of SS-NMR to determine the structure of membrane peptides and proteins are given.

摘要

固态核磁共振(SS-NMR)的生物学应用主要集中在模型膜系统领域。现在越来越关注膜肽和膜蛋白。SS-NMR能够提供有关肽或蛋白如何与膜中的脂质或其他肽/蛋白相互作用、它们对膜的影响以及肽或蛋白相对于膜表面的位置等信息。生物SS-NMR的最新进展得益于标记和核磁共振技术的改进。本综述讨论了取向系统和魔角旋转技术、双层和双分子层微囊,以及化学位移各向异性和偶极耦合的测量。描述了一些特定实验,如交叉极化、旋转共振、旋转回波双共振(REDOR)、质子检测的异核单量子关联谱(PISEMA)、魔角旋转固体回波(MAOSS)和多维实验。除了2H、13C和15N外,还讨论了最近的固态1H、19F和17O核磁共振研究工作。给出了几个使用SS-NMR确定膜肽和膜蛋白结构的例子。

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