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痘苗病毒DNA拓扑异构酶39个残基的突变分析确定赖氨酸-220、精氨酸-223和天冬酰胺-228对共价催化很重要。

Mutational analysis of 39 residues of vaccinia DNA topoisomerase identifies Lys-220, Arg-223, and Asn-228 as important for covalent catalysis.

作者信息

Cheng C, Wang L K, Sekiguchi J, Shuman S

机构信息

Molecular Biology Program, Sloan-Kettering Institute, New York, New York 10021, USA.

出版信息

J Biol Chem. 1997 Mar 28;272(13):8263-9. doi: 10.1074/jbc.272.13.8263.

Abstract

Vaccinia DNA topoisomerase, a 314-amino acid type I enzyme, catalyzes the cleavage and rejoining of DNA strands through a DNA-(3'-phosphotyrosyl)-enzyme intermediate. To identify amino acids that participate in the transesterification reaction, we introduced alanine substitutions at 39 positions within a conserved 57amino acid segment upstream of the active-site tyrosine. Purified wild type and mutant proteins were compared with respect to their activities in relaxing supercoiled DNA. The majority of mutant proteins displayed wild type topoisomerase activity. Mutant enzymes that relaxed DNA at reduced rates were subjected to kinetic analysis of the strand cleavage and religation steps under single-turnover and equilibrium conditions. For the wild type topoisomerase, the observed single-turnover cleavage rate constant (kcl) was 0.29 s-1 and the cleavage-religation equilibrium constant (Kcl) was 0.22. The most dramatic mutational effects were seen with R223A; removal of the basic side chain reduced the rates of cleavage and religation by factors of 10(-4.3) and 10(-5.0), respectively, and shifted the cleavage-religation equilibrium in favor of the covalently bound state (Kcl = 1). Introduction of lysine at position 223 restored the rate of cleavage to 1/10 that of the wild type enzyme. We conclude that a basic residue is essential for covalent catalysis and suggest that Arg-223 is a constituent of the active site. Modest mutational effects were observed at two other positions (Lys-220 and Asn-228), at which alanine substitutions slowed the rates of strand cleavage by 1 order of magnitude and shifted the equilibrium toward the noncovalently bound state. Arg-223 and Lys-220 are conserved in all members of the eukaryotic type I topoisomerase family; Asn-228 is conserved among the poxvirus enzymes.

摘要

痘苗病毒DNA拓扑异构酶是一种含314个氨基酸的I型酶,它通过DNA-(3'-磷酸酪氨酸)-酶中间体催化DNA链的切割和重新连接。为了鉴定参与酯交换反应的氨基酸,我们在活性位点酪氨酸上游一个保守的57个氨基酸片段内的39个位置引入了丙氨酸替代。对纯化的野生型和突变型蛋白在松弛超螺旋DNA方面的活性进行了比较。大多数突变型蛋白表现出野生型拓扑异构酶活性。以较低速率松弛DNA的突变酶在单周转和平衡条件下对链切割和重新连接步骤进行了动力学分析。对于野生型拓扑异构酶,观察到的单周转切割速率常数(kcl)为0.29 s-1,切割-重新连接平衡常数(Kcl)为0.22。R223A产生了最显著的突变效应;去除碱性侧链分别使切割和重新连接速率降低了10^(-4.3)和10^(-5.0)倍,并使切割-重新连接平衡向共价结合状态偏移(Kcl = 1)。在第223位引入赖氨酸使切割速率恢复到野生型酶的1/10。我们得出结论,一个碱性残基对共价催化至关重要,并表明精氨酸-223是活性位点的一个组成部分。在另外两个位置(赖氨酸-220和天冬酰胺-228)观察到了适度的突变效应,在这些位置丙氨酸替代使链切割速率减慢了1个数量级,并使平衡向非共价结合状态偏移。精氨酸-223和赖氨酸-220在真核I型拓扑异构酶家族的所有成员中都是保守的;天冬酰胺-228在痘苗病毒酶中是保守的。

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