Hopson Russell E, Peti Wolfgang
Department of Chemistry, Brown University, Providence, RI, USA.
Methods Mol Biol. 2008;426:447-58. doi: 10.1007/978-1-60327-058-8_30.
Microcoil NMR spectroscopy is based on the increase of coil sensitivity for smaller coil diameters (approximately 1/d). Microcoil NMR probes deliver a remarkable mass-based sensitivity increase (8- to 12-fold) when compared with commonly used 5-mm NMR probes. Although microcoil NMR probes are a well established analytical tool for small molecule liquid-state NMR spectroscopy, after spectroscopy only recently have microcoil NMR probes become available for biomolecular NMR spectroscopy. This chapter highlights differences between commercially available microcoil NMR probes suitable for biomolecular NMR spectroscopy. Furthermore, it provides practical guidance for the use of microcoil probes and shows direct applications for structural biology and structural genomics, such as optimal target screening and structure determination, among others.
微线圈核磁共振光谱基于较小线圈直径(约为1/d)时线圈灵敏度的提高。与常用的5毫米核磁共振探头相比,微线圈核磁共振探头在基于质量的灵敏度方面有显著提高(8至12倍)。尽管微线圈核磁共振探头是小分子液态核磁共振光谱中一种成熟的分析工具,但直到最近,微线圈核磁共振探头才开始用于生物分子核磁共振光谱。本章重点介绍了适用于生物分子核磁共振光谱的市售微线圈核磁共振探头之间的差异。此外,它还为微线圈探头的使用提供了实用指导,并展示了其在结构生物学和结构基因组学中的直接应用,如最佳靶点筛选和结构测定等。