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通过荧光和核磁共振光谱监测氨基酸取代对葡萄球菌核酸酶压力变性的影响。

Effects of amino acid substitutions on the pressure denaturation of staphylococcal nuclease as monitored by fluorescence and nuclear magnetic resonance spectroscopy.

作者信息

Royer C A, Hinck A P, Loh S N, Prehoda K E, Peng X, Jonas J, Markley J L

机构信息

School of Pharmacy, University of Wisconsin-Madison 53706.

出版信息

Biochemistry. 1993 May 18;32(19):5222-32. doi: 10.1021/bi00070a034.

Abstract

In the present study we have used high hydrostatic pressure coupled with either time-resolved and steady-state fluorescence or NMR spectroscopy in order to investigate the effects of amino acid substitutions on the high-pressure denaturation properties of staphylococcal nuclease. This protein has been shown previously to be structurally heterogeneous in its native state. On the NMR time scale, four distinct interconverting conformational forms arise from the population of both cis and trans Xaa-Pro peptide bonds (His46-Pro47 and Lys116-Pro117) [Evans et al. (1989) Biochemistry 28, 362; Loh et al. (1991) in Techniques in Protein Chemistry II, pp 275-282, Academic Press, New York]. Mutations in the protein sequence have been shown to change the distribution among the various forms [Alexandrescu et al. (1989) Biochemistry 28, 204; Alexandrescu et al. (1990) Biochemistry 29, 4516]. Time-resolved fluorescence on a series of mutants with altered equilibria for cis/trans isomerism about the 116-117 peptide bond did not reveal any simple relationship between the position of the cis/trans equilibrium in the folded state and the heterogeneity of the fluorescence decay. However, the specific dynamic properties of each mutant, as revealed by time-resolved fluorescence, do appear to be correlated with their partial molar volume changes of denaturation. A striking finding is that mutation of either (or both) of the prolines that exhibits structural heterogeneity to glycine greatly alters the stability of the protein to pressure. These mutations also result in decreased chain mobility as assessed by time-resolved fluorescence. It appears that packing defects, which allow for peptide bond cis/trans heterogeneity in the wild-type protein, are removed by the Pro-->Gly substitutions.

摘要

在本研究中,我们使用了高静水压结合时间分辨荧光和稳态荧光或核磁共振光谱,以研究氨基酸取代对葡萄球菌核酸酶高压变性特性的影响。先前已表明该蛋白质在其天然状态下结构是异质的。在核磁共振时间尺度上,顺式和反式Xaa-Pro肽键(His46-Pro47和Lys116-Pro117)的群体产生了四种不同的相互转化的构象形式[Evans等人(1989年)《生物化学》28卷,362页;Loh等人(1991年)《蛋白质化学技术II》,第275 - 282页,学术出版社,纽约]。已表明蛋白质序列中的突变会改变各种形式之间的分布[Alexandrescu等人(1989年)《生物化学》28卷,204页;Alexandrescu等人(1990年)《生物化学》29卷,4516页]。对一系列关于116 - 117肽键顺/反异构化平衡改变的突变体进行时间分辨荧光研究,未发现折叠态顺/反平衡位置与荧光衰减异质性之间存在任何简单关系。然而,时间分辨荧光揭示的每个突变体的特定动态特性似乎与它们变性的偏摩尔体积变化相关。一个显著的发现是,表现出结构异质性的脯氨酸中的一个(或两个)突变为甘氨酸会极大地改变蛋白质对压力的稳定性。这些突变还导致通过时间分辨荧光评估的链流动性降低。似乎野生型蛋白质中允许肽键顺/反异质性的堆积缺陷被脯氨酸到甘氨酸的取代消除了。

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