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用于固态蛋白质中同核碳距离测量的偶极化学位移相关光谱学:在结构测定和精修中的应用

Dipolar chemical shift correlation spectroscopy for homonuclear carbon distance measurements in proteins in the solid state: application to structure determination and refinement.

作者信息

Peng Xiaohu, Libich David, Janik Rafal, Harauz George, Ladizhansky Vladimir

机构信息

Department of Physics, Department of Molecular and Cellular Biology, and Biophysics Interdepartmental Group, University of Guelph, 50 Stone Road East, Guelph, Ontario, Canada.

出版信息

J Am Chem Soc. 2008 Jan 9;130(1):359-69. doi: 10.1021/ja076658v. Epub 2007 Dec 12.

Abstract

High-resolution solid-state NMR spectroscopy has become a promising tool for protein structure determination. Here, we describe a new dipolar-chemical shift correlation experiment for the measurement of homonuclear 13C-13C distances in uniformly 13C,15N-labeled proteins and demonstrate its suitability for protein structure determination and refinement. The experiments were carried out on the beta1 immunoglobulin binding domain of protein G (GB1). Both intraresidue and interresidue distances between carbonyl atoms and atoms in the aliphatic side chains were collected using a three-dimensional chemical shift correlation spectroscopy experiment that uses homogeneously broadened rotational resonance recoupling for carbon mixing. A steady-state approximation for the polarization transfer function was employed in data analysis, and a total of 100 intramolecular distances were determined, all in the range 2.5-5.5 A. An additional 41 dipolar contacts were detected, but the corresponding distances could not be accurately quantified. Additional distance and torsional restraints were derived from the proton-driven spin diffusion measurements and from the chemical shift analysis, respectively. Using all these restraints, it was possible to refine the structure of GB1 to a root-mean square deviation of 0.8 A. The approach is of general applicability for peptides and small proteins and can be easily incorporated into a structure determination and refinement protocol.

摘要

高分辨率固态核磁共振光谱已成为蛋白质结构测定的一种有前景的工具。在此,我们描述了一种用于测量均匀标记有(^{13}C)、(^{15}N)的蛋白质中同核(^{13}C - ^{13}C)距离的新型偶极 - 化学位移相关实验,并证明了其在蛋白质结构测定和精修中的适用性。实验在蛋白G(GB1)的β1免疫球蛋白结合结构域上进行。使用三维化学位移相关光谱实验收集羰基原子与脂肪族侧链中原子之间的残基内和残基间距离,该实验利用均匀展宽的旋转共振重新耦合进行碳混合。数据分析中采用了极化转移函数的稳态近似,共确定了100个分子内距离,均在2.5 - 5.5埃范围内。另外检测到41个偶极接触,但相应距离无法准确量化。分别从质子驱动的自旋扩散测量和化学位移分析中导出了额外的距离和扭转约束。使用所有这些约束,可将GB1的结构精修至均方根偏差为0.8埃。该方法对肽和小蛋白质具有普遍适用性,并且可以轻松纳入结构测定和精修方案中。

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