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利用核磁共振光谱法测定巴司星的三维溶液结构和13C化学位移归属

Three-dimensional solution structure and 13C assignments of barstar using nuclear magnetic resonance spectroscopy.

作者信息

Lubienski M J, Bycroft M, Freund S M, Fersht A R

机构信息

Cambridge Centre for Protein Engineering, Department of Chemistry, University of Cambridge, U.K.

出版信息

Biochemistry. 1994 Aug 2;33(30):8866-77.

PMID:8043574
Abstract

We present the high-resolution solution structure and 13C assignments of wild-type barstar, an 89 amino acid residue polypeptide inhibitor of barnase, derived from heteronuclear NMR techniques. These were obtained from measurements on unlabeled, uniformly 15N- and 13C/15N-labeled, and 10% 13C-labeled barstar samples that have both cysteines (at positions 40 and 82) fully reduced. In total, 30 structures were calculated by hybrid distance geometry-dynamical simulated annealing calculations. The atomic rms distribution about the mean coordinate positions is 0.42 A for all backbone atoms and 0.90 A for all atoms. The structure is composed of three parallel alpha-helices packed against a three-stranded parallel beta-sheet. A more poorly defined helix links the second beta-strand and the third major alpha-helix. The loop involved in binding barnase is extremely well defined and held rigidly by interactions from the main body of the protein to both ends and the middle of the loop. This structure will be used to aid protein engineering studies currently taking place on the free and bound states of barstar and barnase.

摘要

我们展示了野生型巴氏星的高分辨率溶液结构和13C归属,巴氏星是一种由89个氨基酸残基组成的核糖核酸酶抑制剂,通过异核核磁共振技术获得。这些结果来自对未标记、均匀15N和13C/15N标记以及10% 13C标记的巴氏星样品的测量,这些样品中的两个半胱氨酸(位于第40和82位)均完全还原。总共通过混合距离几何 - 动力学模拟退火计算得到了30个结构。所有主链原子相对于平均坐标位置的原子均方根偏差为0.42 Å,所有原子的均方根偏差为0.90 Å。该结构由三个平行的α螺旋堆积在一个三链平行的β折叠片上。一个定义不太明确的螺旋连接第二个β链和第三个主要的α螺旋。参与结合核糖核酸酶的环定义非常明确,并通过蛋白质主体与环的两端及中间的相互作用而保持刚性。该结构将用于辅助目前正在进行的关于巴氏星和核糖核酸酶的游离态和结合态的蛋白质工程研究。

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