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基于主链动力学的相关变化对葡萄球菌核酸酶模型变性状态下远程相互作用的分析。

Analysis of long-range interactions in a model denatured state of staphylococcal nuclease based on correlated changes in backbone dynamics.

作者信息

Sinclair J F, Shortle D

机构信息

Department of Biological Chemistry, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Protein Sci. 1999 May;8(5):991-1000. doi: 10.1110/ps.8.5.991.

Abstract

An expanded, highly dynamic denatured state of staphylococcal nuclease exhibits a native-like topology in the apparent absence of tight packing and fixed hydrogen bonds (Gillespie JR, Shortle D, 1997, J Mol Biol 268:158-169, 170-184). To address the physical basis of the long-range spatial ordering of this molecule, we probe the effects of perturbations of the sequence and solution conditions on the local chain dynamics of a denatured 101-residue fragment that is missing the first three beta strands. Structural interactions between chain segments are inferred from correlated changes in the motional behavior of residues monitored by 15N NMR relaxation measurements. Restoration of the sequence corresponding to the first three beta strands significantly increases the average order of all chain segments that form the five strand beta barrel including loops but has no effect on the carboxy terminal 30 residues. Addition of the denaturing salt sodium perchlorate enhances ordering over the entire sequence of this fragment. Analysis of seven different substitution mutants points to a complex set of interactions between the hydrophobic segment corresponding to beta strand 5 and the remainder of the chain. General patterns in the data suggest there is a hierarchy of native-like interactions that occur transiently in the denatured state and are consistent with the overall topology of the denatured state ensemble being determined by many coupled local interactions rather than a few highly specific long-range interactions.

摘要

葡萄球菌核酸酶的一种扩展的、高度动态的变性状态在明显缺乏紧密堆积和固定氢键的情况下呈现出类似天然的拓扑结构(吉莱斯皮JR,肖特尔D,1997年,《分子生物学杂志》268:158 - 169,170 - 184)。为了探究该分子长程空间排序的物理基础,我们研究了序列和溶液条件的扰动对一个缺失前三段β链的101个残基变性片段局部链动力学的影响。通过15N NMR弛豫测量监测残基运动行为的相关变化来推断链段之间的结构相互作用。恢复对应于前三段β链的序列显著增加了构成五链β桶(包括环)的所有链段的平均有序度,但对羧基末端的30个残基没有影响。添加变性盐高氯酸钠增强了该片段整个序列的有序度。对七个不同取代突变体的分析表明,对应于β链5的疏水片段与链的其余部分之间存在一组复杂的相互作用。数据中的一般模式表明,在变性状态下会短暂出现类似天然的相互作用层次结构,并且与变性状态整体拓扑结构由许多耦合的局部相互作用而非少数高度特异性的长程相互作用决定这一观点一致。

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