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通过质子检测的13C NMR光谱研究蛋白质中甲基的动力学。应用于葡萄球菌核酸酶的亮氨酸残基。

Dynamics of methyl groups in proteins as studied by proton-detected 13C NMR spectroscopy. Application to the leucine residues of staphylococcal nuclease.

作者信息

Nicholson L K, Kay L E, Baldisseri D M, Arango J, Young P E, Bax A, Torchia D A

机构信息

Bone Research Branch, National Institute of Dental Research, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Biochemistry. 1992 Jun 16;31(23):5253-63. doi: 10.1021/bi00138a003.

Abstract

This paper describes the application of recently developed nuclear magnetic resonance (NMR) pulse sequences to obtain information about the internal dynamics of isotopically enriched hydrophobic side chains in proteins. The two-dimensional spectra provided by the pulse sequences enable one to make accurate measurements of nuclear Overhauser effects (NOE) and longitudinal (T1) and transverse (T2) relaxation times of enriched methyl carbons in proteins. Herein, these techniques are used to investigate the internal dynamics of the 11 leucine side chains of staphylococcal nuclease (SNase), a small enzyme having Mr = 16.8K, in the absence and presence of ligands thymidine 3',5'-bisphosphate (pdTp) and Ca2+. We report the synthesis of [5,5'-13C2]leucine, the preparation of SNase containing the labeled leucine, the sequential assignment of the leucine methyl carbons and protons in the liganded and unliganded proteins, and the measurement of the 13C T1, T2, and NOE values for the SNase leucine methyl carbons. Analysis of the relaxation parameters using the formalism of Lipari and Szabo shows that the internal motions of the leucine methyl carbons are characterized by effective correlation times tau f (5-80 ps) and tau s (less than 2 ns). The fast motion is identified with the rapid rotation of the methyl group about the C gamma-C delta bond axis, while the slow motion is associated with reorientation of the C gamma-C delta bond axis itself. The mean squared order parameters associated with the latter motion, Ss2, lie in the range 0.34-0.92. The values of Ss2 correlate reasonably well with the temperature factors of the leucine methyl carbons obtained from the crystal structures, but some are smaller than anticipated on the basis of the fact that nearly all leucine methyl carbons are buried and have temperature factors no larger than that of the leucine backbone atoms. Five leucine residues in liganded SNase and eight in unliganded SNase have values of Ss2 less than 0.71. These order parameters correspond to large amplitude motions (angular excursions of 27-67 degrees) of the C gamma-C delta bond axis. These results indicate that, in solution, the internal motions of the leucine side chains of SNase are significantly larger than suggested by the X-ray structures or by qualitative analysis of NOESY spectra. Comparison of Ss2 values obtained from liganded and unliganded SNase reveals a strong correlation between delta Ss2 and distance between the leucine methyl carbon and the ligands.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

本文描述了最近开发的核磁共振(NMR)脉冲序列在获取蛋白质中同位素富集疏水侧链内部动力学信息方面的应用。这些脉冲序列提供的二维光谱能够精确测量蛋白质中富集甲基碳的核Overhauser效应(NOE)以及纵向(T1)和横向(T2)弛豫时间。在此,这些技术用于研究葡萄球菌核酸酶(SNase,一种分子量Mr = 16.8K的小酶)的11个亮氨酸侧链在不存在和存在配体胸苷3',5'-双磷酸(pdTp)和Ca2+时的内部动力学。我们报告了[5,5'-13C2]亮氨酸的合成、含标记亮氨酸的SNase的制备、配体结合和未结合蛋白质中亮氨酸甲基碳和质子的序列归属,以及SNase亮氨酸甲基碳的13C T1、T2和NOE值的测量。使用Lipari和Szabo的形式体系对弛豫参数进行分析表明,亮氨酸甲基碳的内部运动具有有效相关时间τf(5 - 80皮秒)和τs(小于2纳秒)的特征。快速运动被认为是甲基围绕Cγ - Cδ键轴的快速旋转,而慢速运动与Cγ - Cδ键轴本身的重新定向有关。与后一种运动相关的均方序参数Ss2在0.34 - 0.92范围内。Ss2的值与从晶体结构获得的亮氨酸甲基碳的温度因子有合理的相关性,但有些值比基于几乎所有亮氨酸甲基碳都被掩埋且温度因子不大于亮氨酸主链原子的温度因子这一事实所预期的要小。配体结合的SNase中有5个亮氨酸残基和未结合的SNase中有8个亮氨酸残基的Ss2值小于0.71。这些序参数对应于Cγ - Cδ键轴的大幅度运动(角偏移27 - 67度)。这些结果表明,在溶液中,SNase亮氨酸侧链的内部运动比X射线结构或NOESY光谱的定性分析所表明的要大得多。比较配体结合和未结合的SNase获得的Ss2值,发现δSs2与亮氨酸甲基碳和配体之间的距离有很强的相关性。(摘要截断于400字)

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