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氢-1核磁共振证据表明葡萄球菌核酸酶存在三种相互转化的形式:突变和溶液条件对其分布的影响。

Hydrogen-1 NMR evidence for three interconverting forms of staphylococcal nuclease: effects of mutations and solution conditions on their distribution.

作者信息

Alexandrescu A T, Ulrich E L, Markley J L

机构信息

Department of Biochemistry, College of Agricultural and Life Sciences, University of Wisconsin-Madison 53706.

出版信息

Biochemistry. 1989 Jan 10;28(1):204-11. doi: 10.1021/bi00427a028.

Abstract

It has been known for several years that 1H NMR spectra of the enzyme staphylococcal nuclease contain resonances due to conformational heterogeneity [Markley, J. L., Williams, M. N., & Jardetzky, O. (1970) Proc. Natl. Acad. Sci. U.S.A. 65, 645-651]. One source of conformational heterogeneity has been attributed recently to cis/trans isomeriation of the Lys116-Pro117 peptide bond [Evans, P. A., Dobson, C. M., Kautz, R. A., Hatfull, G., & Fox, R. O. (1987) Nature (London) 329, 266-268]. In this paper we present evidence for three interconverting folded forms of nuclease. Forms N and N' are monomeric; form N" appears at higher nuclease concentrations and probably corresponds to dimerized enzyme. Saturation transfer was used to demonstrate that exchange occurs between the denatured state and N". The effects of temperature, pH, and Ca2+ and nucleotide binding on NMR spectra of nuclease were examined. When the temperature is increased or the pH is lowered, form N' is favored relative to N. Binding of a competitive inhibitor (thymidine 3',5'-bisphosphate plus calcium ion) strongly favors one form of nuclease. 1H NMR spectra of wild-type nuclease, the single-mutant nucleases L89F and H124L, and the double-mutant nuclease F76V+H124L were compared. In the unligated proteins, the equilibrium constant for the conformational equilibrium N in equilibrium with N' is approximately 0.1 in wild-type nuclease and nuclease H124L; by contrast, this equilibrium constant is about 0.7 in nuclease L89F and 1.2 in nuclease F76V+H124L under similar conditions.

摘要

数年来人们已经知道,葡萄球菌核酸酶的1H NMR谱包含由于构象异质性产生的共振峰[马克利,J. L.,威廉姆斯,M. N.,& 雅德茨基,O.(1970年)《美国国家科学院院刊》65,645 - 651]。构象异质性的一个来源最近被归因于Lys116 - Pro117肽键的顺式/反式异构化[埃文斯,P. A.,多布森,C. M.,考茨,R. A.,哈特富尔,G.,& 福克斯,R. O.(1987年)《自然》(伦敦)329,266 - 268]。在本文中,我们提供了核酸酶三种相互转化的折叠形式的证据。形式N和N'是单体;形式N"在较高核酸酶浓度下出现,可能对应二聚化的酶。饱和转移被用于证明变性状态和N"之间发生了交换。研究了温度、pH、Ca2+和核苷酸结合对核酸酶NMR谱的影响。当温度升高或pH降低时,相对于N,形式N'更受青睐。竞争性抑制剂(胸苷3',5'-二磷酸加钙离子)的结合强烈偏向于一种核酸酶形式。比较了野生型核酸酶、单突变核酸酶L89F和H124L以及双突变核酸酶F76V + H124L的1H NMR谱。在未结合配体的蛋白质中,在野生型核酸酶和核酸酶H124L中,构象平衡N与N'的平衡常数约为0.1;相比之下,在类似条件下,该平衡常数在核酸酶L89F中约为0.7,在核酸酶F76V + H124L中为1.2。

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