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DNA拓扑异构酶IB的催化机制。

Catalytic mechanism of DNA topoisomerase IB.

作者信息

Krogh B O, Shuman S

机构信息

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

出版信息

Mol Cell. 2000 Jun;5(6):1035-41. doi: 10.1016/s1097-2765(00)80268-3.

Abstract

Type IB topoisomerases and tyrosine recombinases are structurally homologous strand transferases that act through DNA-(3'-phosphotyrosyl)-enzyme intermediates. A constellation of conserved amino acids (Arg-130, Lys-167, Arg-223, and His-265 in vaccinia topoisomerase) catalyzes transesterification of tyrosine to the scissile phosphodiester. We used 5'-bridging phosphorothiolate-modified DNAs to implicate Lys-167 as a general acid catalyst. The lower pKa of the 5'-S leaving group versus 5'-O restored activity to the K167A mutant, whereas there was no positive thio effect for mutants R223A and H265A. The lysine is located atop a flexible hairpin loop, and it shifts into the minor groove upon DNA binding. Coupling of conformational changes in a general acid loop to covalent catalysis of phosphoryl transfer is one of several mechanistic features shared by the topoisomerase/recombinase and protein phosphatase superfamilies.

摘要

IB型拓扑异构酶和酪氨酸重组酶是结构同源的链转移酶,它们通过DNA-(3'-磷酸酪氨酸基)-酶中间体发挥作用。一组保守氨基酸(痘苗拓扑异构酶中的Arg-130、Lys-167、Arg-223和His-·265)催化酪氨酸与可切割磷酸二酯的转酯反应。我们使用5'-桥连硫代磷酸酯修饰的DNA来表明Lys-167作为一般酸催化剂。5'-S离去基团相对于5'-O的较低pKa恢复了K167A突变体的活性,而R223A和H265A突变体没有正向硫效应。赖氨酸位于一个柔性发夹环的顶部,并且在DNA结合时它会移入小沟。一般酸环中的构象变化与磷酰转移的共价催化的偶联是拓扑异构酶/重组酶和蛋白质磷酸酶超家族共有的几种机制特征之一。

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