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通过共价结合的顺磁标记物实现蛋白质多维固态 NMR 谱的快速获取。

Rapid acquisition of multidimensional solid-state NMR spectra of proteins facilitated by covalently bound paramagnetic tags.

机构信息

Department of Chemistry, The Ohio State University, Columbus, Ohio 43210, USA.

出版信息

J Am Chem Soc. 2010 Jul 21;132(28):9561-3. doi: 10.1021/ja103545e.

Abstract

We describe a condensed data collection approach that facilitates rapid acquisition of multidimensional magic-angle spinning solid-state nuclear magnetic resonance (SSNMR) spectra of proteins by combining rapid sample spinning, optimized low-power radio frequency pulse schemes and covalently attached paramagnetic tags to enhance protein (1)H spin-lattice relaxation. Using EDTA-Cu(2+)-modified K28C and N8C mutants of the B1 immunoglobulin binding domain of protein G as models, we demonstrate that high resolution and sensitivity 2D and 3D SSNMR chemical shift correlation spectra can be recorded in as little as several minutes and several hours, respectively, for samples containing approximately 0.1-0.2 micromol of (13)C,(15)N- or (2)H,(13)C,(15)N-labeled protein. This mode of data acquisition is naturally suited toward the structural SSNMR studies of paramagnetic proteins, for which the typical (1)H longitudinal relaxation time constants are inherently a factor of at least approximately 3-4 lower relative to their diamagnetic counterparts. To illustrate this, we demonstrate the rapid site-specific determination of backbone amide (15)N longitudinal paramagnetic relaxation enhancements using a pseudo-3D SSNMR experiment based on (15)N-(13)C correlation spectroscopy, and we show that such measurements yield valuable long-range (15)N-Cu(2+) distance restraints which report on the three-dimensional protein fold.

摘要

我们描述了一种浓缩的数据采集方法,通过结合快速样品旋转、优化的低功率射频脉冲方案和共价连接的顺磁标记物来增强蛋白质(1)H 自旋晶格弛豫,从而促进多维魔角旋转固态核磁共振(SSNMR)谱的快速获取。使用 EDTA-Cu(2+)修饰的 K28C 和 N8C 突变体作为模型,我们证明了高分辨率和灵敏度的 2D 和 3D SSNMR 化学位移相关谱可以在几分钟和几小时内分别记录下来,对于含有约 0.1-0.2 微摩尔(13)C,(15)N-或(2)H,(13)C,(15)N 标记的蛋白质的样品。这种数据采集模式自然适合于顺磁蛋白质的结构 SSNMR 研究,对于顺磁蛋白质,典型的(1)H 纵向弛豫时间常数相对于其反磁性对应物至少低 3-4 倍。为了说明这一点,我们使用基于(15)N-(13)C 相关光谱的伪 3D SSNMR 实验,快速确定了骨架酰胺(15)N 纵向顺磁弛豫增强的位点特异性,并表明这些测量可以得到有价值的长程(15)N-Cu(2+)距离约束,报告三维蛋白质折叠。

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