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通过对随机部分标记蛋白质的13C弛豫研究揭示的人类泛素的内部动力学。

Internal dynamics of human ubiquitin revealed by 13C-relaxation studies of randomly fractionally labeled protein.

作者信息

Wand A J, Urbauer J L, McEvoy R P, Bieber R J

机构信息

Department of Chemistry, State University of New York at Buffalo 14260, USA.

出版信息

Biochemistry. 1996 May 14;35(19):6116-25. doi: 10.1021/bi9530144.

Abstract

The use of random, fractional 13C-enrichment combined with low pass filtration has allowed the determination of NMR relaxation parameters at an unprecedented number of sites within recombinant human ubiquitin. Essentially complete 1H, 13C, and 15N resonance assignments for the protein are reported. Carbon spin lattice and heteronuclear NOE relaxation data have been analyzed in the context of the Lipari-Szabo "model free" formalism. The generalized order parameters for 56 main chain alpha C-H vectors have been determined and are found to correspond to the highly restricted motion seen in previous studies of the motion of amide N-H vectors. In distinct contrast, the analysis presented here indicates an unexpected range of dynamics within the interior of the protein. The generalized order parameters of 45 methyl groups of human ubiquitin have been determined. The methyl groups of Thr and Ala residues show generalized order parameters ranging from the Woessner limit (0.111) to below 0.01. Generalized order parameters for all methyl groups of the seven isoleucine residues were determined. With one exception, the generalized order parameters of the gamma methyls were equal to or greater than the corresponding delta methyls, indicating higher mobility away from the main chain. Generalized order parameters for 11 methyl groups of leucine residues were also determined. In six of the seven cases where the generalized order parameters of both prochiral methyl groups were determined, the pro-R methyl consistently shows a higher value than the pro-S methyl group. Generalized order parameters for seven methyl groups of four valines were also determined. There is no apparent correlation of methyl group prochirality with the value of the generalized order parameter. These data have several implications and generally indicate that the interior of the protein is heterogeneously dynamic.

摘要

随机、分数 13C 富集与低通滤波的结合使用,使得能够在重组人泛素内前所未有的大量位点测定核磁共振弛豫参数。报道了该蛋白质基本完整的 1H、13C 和 15N 共振归属。碳自旋晶格和异核 NOE 弛豫数据已在 Lipari-Szabo“无模型”形式体系的背景下进行了分析。已确定了 56 个主链α C-H 向量的广义序参数,发现它们与先前对酰胺 N-H 向量运动的研究中观察到的高度受限运动相对应。与此形成鲜明对比的是,此处给出的分析表明蛋白质内部存在意想不到的动力学范围。已确定了人泛素 45 个甲基的广义序参数。苏氨酸和丙氨酸残基的甲基显示出从 Woessner 极限(0.111)到低于 0.01 的广义序参数。确定了七个异亮氨酸残基所有甲基的广义序参数。除了一个例外,γ甲基的广义序参数等于或大于相应的δ甲基,表明远离主链的流动性更高。还确定了亮氨酸残基 11 个甲基的广义序参数。在确定了两个前手性甲基广义序参数的七个案例中的六个中,前-R 甲基始终显示出比前-S 甲基更高的值。还确定了四个缬氨酸七个甲基的广义序参数。甲基前手性与广义序参数值之间没有明显的相关性。这些数据有几个含义,总体表明蛋白质内部是异质动态的。

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