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首页> 外文期刊>The Journal of Chemical Physics >INVESTIGATION OF MOLECULAR STRUCTURE IN SOLIDS BY TWO-DIMENSIONAL NMR EXCHANGE SPECTROSCOPY WITH MAGIC ANGLE SPINNING
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INVESTIGATION OF MOLECULAR STRUCTURE IN SOLIDS BY TWO-DIMENSIONAL NMR EXCHANGE SPECTROSCOPY WITH MAGIC ANGLE SPINNING

机译:二维NMR交换光谱和魔术角纺丝技术研究固体中的分子结构

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摘要

An approach to the investigation of molecular structures in disordered solids, using two-dimensional (2D) nuclear magnetic resonance (NMR) exchange spectroscopy with magic angle spinning (MAS)I is described. This approach permits the determination of the relative orientation of two isotopically labeled chemical groups within a molecule in an unoriented sample, thus placing strong constraints on the molecular conformation. Structural information is contained in the amplitudes of crosspeaks in rotor-synchronized 2D MAS exchange spectra that connect spinning sideband Lines of the two labeled sites. The theory for calculating the amplitudes of spinning sideband crosspeaks in 2D MAS exchange spectra, in the limit of complete magnetization exchange between the labeled sites, is presented in detail. A new technique that enhances the sensitivity of 2D MAS exchange spectra to molecular structure, called orientationally weighted 2D MAS exchange spectroscopy, is introduced. Symmetry principles that underlie the construction of pulse sequences for orientationally weighted 2D MAS exchange spectroscopy are explained. Experimental demonstrations of the utility of 2D MAS exchange spectroscopy in structural investigations of peptide and protein backbone conformations are carried out on a model C-13-labeled tripeptide, L-alanylglycylglycine. The dihedral angles phi and psi that characterize the peptide backbone conformation at Gly-2 are obtained accurately from the orientationally weighted and unweighted 2D C-13 NMR exchange spectra. (C) 1996 American Institute of Physics. [References: 55]
机译:描述了一种使用二维(2D)核磁共振(NMR)交换光谱和魔角旋转(MAS)I研究无序固体中分子结构的方法。这种方法可以确定未定向样品中分子内两个同位素标记的化学基团的相对方向,从而对分子构象施加了严格的限制。结构信息包含在转子同步的2D MAS交换光谱的交叉峰振幅中,该峰连接两个标记位点的旋转边带线。详细介绍了在标记的位点之间完全磁化交换的限制下,计算二维MAS交换谱中旋转边带交叉峰幅度的理论。引入了一种增强2D MAS交换光谱对分子结构敏感性的新技术,称为定向加权2D MAS交换光谱法。说明了对称原理,这些原理构成了定向加权2D MAS交换光谱的脉冲序列的构建。在模型C-13标记的三肽L-丙氨酰甘氨酰甘氨酸上进行了2D MAS交换光谱在肽和蛋白质骨架构象结构研究中的实用性的实验证明。从定向加权和非加权2D C-13 NMR交换光谱可准确获得表征Gly-2处肽骨架构象的二面角phi和psi。 (C)1996年美国物理研究所。 [参考:55]

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