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参与氯离子转运通道选择性的氨基酸盐酸盐的固态35/37Cl核磁共振光谱:900兆赫兹下的机遇

Solid-state 35/37Cl NMR spectroscopy of hydrochloride salts of amino acids implicated in chloride ion transport channel selectivity: opportunities at 900 MHz.

作者信息

Bryce David L, Sward Gregory D, Adiga Samyuktha

机构信息

Department of Chemistry, University of Ottawa, Ottawa, Ontario K1N 6N5, Canada.

出版信息

J Am Chem Soc. 2006 Feb 15;128(6):2121-34. doi: 10.1021/ja057253i.

Abstract

The results of a detailed systematic chlorine solid-state NMR study of several hydrochloride salts of amino acids implicated in chloride ion transport channel selectivity are reported. (35)Cl and (37)Cl NMR spectra have been obtained for stationary and/or magic-angle spinning powdered samples of the following compounds on 500 and/or 900 MHz spectrometers: DL-arginine HCl monohydrate, L-lysine HCl, L-serine HCl, L-glutamic acid HCl, L-proline HCl, L-isoleucine HCl, L-valine HCl, L-phenylalanine HCl, and glycine HCl. Spectral analyses provide information on the anisotropic properties and relative orientations of the chlorine electric field gradient and chemical shift (CS) tensors, which are intimately related to the local molecular and electronic structure. Data obtained at 900 MHz provide unique examples of the effects of CS anisotropy on the NMR spectrum of a quadrupolar nucleus. The range of chlorine quadrupolar coupling constants (C(Q)) measured, -6.42 to 2.03 MHz, demonstrates the sensitivity of this parameter to the chloride ion environment and suggests the applicability of chlorine solid-state NMR as a novel experimental tool for defining chloride binding environments in larger ion channel systems. Salts of hydrophobic amino acids are observed to tend to exhibit larger values of C(Q) than salts of hydrophilic amino acids. A simple model for rationalizing the observed trend in C(Q) is proposed. For salts for which neutron diffraction structures are available, we identify a quantum chemical method which reproduces experimental values of C(Q) with a root-mean-square deviation of 0.1 MHz and a correlation coefficient of 0.9998. On the basis of this, chlorine NMR tensors are predicted for the Cl(-) binding site in ClC channels.

摘要

报道了一项针对与氯离子传输通道选择性相关的几种氨基酸盐酸盐进行的详细系统的氯固态核磁共振研究结果。在500兆赫和/或900兆赫的光谱仪上,已获得以下化合物的静态和/或魔角旋转粉末样品的(35)Cl和(37)Cl核磁共振谱:DL-精氨酸盐酸盐一水合物、L-赖氨酸盐酸盐、L-丝氨酸盐酸盐、L-谷氨酸盐酸盐、L-脯氨酸盐酸盐、L-异亮氨酸盐酸盐、L-缬氨酸盐酸盐、L-苯丙氨酸盐酸盐和甘氨酸盐酸盐。光谱分析提供了有关氯电场梯度和化学位移(CS)张量的各向异性特性及相对取向的信息,这些与局部分子和电子结构密切相关。在900兆赫下获得的数据提供了CS各向异性对四极核核磁共振谱影响的独特示例。所测得的氯四极耦合常数(C(Q))范围为-6.42至2.03兆赫,表明该参数对氯离子环境的敏感性,并暗示氯固态核磁共振作为一种用于定义较大离子通道系统中氯离子结合环境的新型实验工具的适用性。观察到疏水氨基酸的盐往往比亲水氨基酸的盐表现出更大的C(Q)值。提出了一个用于合理解释所观察到的C(Q)趋势的简单模型。对于有中子衍射结构的盐,我们确定了一种量子化学方法,该方法能以0.1兆赫的均方根偏差和0.9998的相关系数重现C(Q)的实验值。基于此,预测了ClC通道中Cl(-)结合位点的氯核磁共振张量。

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