Judge Peter J, Taylor Garrick F, Dannatt Hugh R W, Watts Anthony
Biomembrane Structure Unit, Biochemistry Department, South Parks Road, Oxford, OX1 3QU, UK.
Methods Mol Biol. 2015;1261:331-47. doi: 10.1007/978-1-4939-2230-7_17.
Solid-state NMR (ssNMR) is a versatile technique that can provide high-resolution (sub-angstrom) structural data for integral membrane proteins embedded in native and model membrane environments. The methodologies for a priori structure determination have for the most part been developed using samples with crystalline and fibrous morphologies. However, the techniques are now being applied to large, polytopic membrane proteins including receptors, ion channels, and porins. ssNMR data may be used to annotate and refine existing structures in regions of the protein not fully resolved by crystallography (including ligand-binding sites and mobile solvent accessible loop regions). This review describes the spectroscopic experiments and data analysis methods (including assignment) used to generate high-resolution structural data for membrane proteins. We also consider the range of sample morphologies that are appropriate for study by this method.
固态核磁共振(ssNMR)是一种多功能技术,可为嵌入天然和模型膜环境中的整合膜蛋白提供高分辨率(亚埃级)结构数据。先验结构测定方法大多是使用具有晶体和纤维形态的样品开发的。然而,现在这些技术正被应用于大型多结构域膜蛋白,包括受体、离子通道和孔蛋白。ssNMR数据可用于注释和完善蛋白质中晶体学未完全解析的区域(包括配体结合位点和可移动的溶剂可及环区域)的现有结构。本综述描述了用于生成膜蛋白高分辨率结构数据的光谱实验和数据分析方法(包括归属)。我们还考虑了适用于该方法研究的样品形态范围。