Huang Hao, Melacini Giuseppe
Department of Chemistry, McMaster University, 1280 Main Street, W. Hamilton, Ont., Canada L8S 4M1.
Anal Chim Acta. 2006 Mar 30;564(1):1-9. doi: 10.1016/j.aca.2005.10.049. Epub 2005 Nov 28.
High-resolution solution NMR experiments are extremely useful to characterize the location and the dynamics of hydrating water molecules at atomic resolution. However, these methods are severely limited by undesired incoherent transfer pathways such as those arising from exchange-relayed intra-molecular cross-relaxation. Here, we review several complementary exchange network editing methods that can be used in conjunction with other types of NMR hydration experiments such as magnetic relaxation dispersion and 1J(NC') measurements to circumvent these limitations. We also review several recent contributions illustrating how the original solution hydration NMR pulse sequence architecture has inspired new approaches to map other types of non-covalent interactions going well beyond the initial scope of hydration. Specifically, we will show how hydration NMR methods have evolved and have been adapted to binding site mapping, ligand screening, protein-peptide and peptide-lipid interaction profiling.
高分辨率溶液核磁共振实验对于在原子分辨率下表征水化水分子的位置和动力学极为有用。然而,这些方法受到诸如由交换中继的分子内交叉弛豫产生的不期望的非相干转移途径的严重限制。在此,我们综述了几种互补的交换网络编辑方法,这些方法可与其他类型的核磁共振水化实验(如磁弛豫色散和1J(NC')测量)结合使用,以规避这些限制。我们还综述了最近的一些研究成果,这些成果说明了原始的溶液水化核磁共振脉冲序列结构如何激发了新的方法来绘制其他类型的非共价相互作用,远远超出了水化的最初范围。具体而言,我们将展示水化核磁共振方法是如何发展并适用于结合位点映射、配体筛选、蛋白质-肽和肽-脂质相互作用分析的。