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真核生物拓扑异构酶I与位点特异性重组酶之间结构与机制的保守性。

Conservation of structure and mechanism between eukaryotic topoisomerase I and site-specific recombinases.

作者信息

Cheng C, Kussie P, Pavletich N, Shuman S

机构信息

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

出版信息

Cell. 1998 Mar 20;92(6):841-50. doi: 10.1016/s0092-8674(00)81411-7.

Abstract

Vaccinia DNA topoisomerase breaks and rejoins DNA strands through a DNA-(3'-phosphotyrosyl)-enzyme intermediate. A C-terminal catalytic domain, Topo(81-314), suffices for transesterification chemistry. The domain contains a constellation of five amino acids, conserved in all eukaryotic type IB topoisomerases, that catalyzes attack of the tyrosine nucleophile on the scissile phosphate. The structure of the catalytic domain, consisting of ten alpha helices and a three-strand beta sheet, resembles the catalytic domains of site-specific recombinases that act via a topoisomerase IB-like mechanism. The topoisomerase catalytic pentad is conserved in the tertiary structures of the recombinases despite scant sequence similarity overall. This implies that the catalytic domains of type IB topoisomerases and recombinases derive from a common ancestral strand transferase.

摘要

痘苗病毒DNA拓扑异构酶通过DNA-(3'-磷酸酪氨酸)-酶中间体断裂并重新连接DNA链。C末端催化结构域Topo(81-314)足以进行酯交换反应。该结构域包含一组在所有真核生物IB型拓扑异构酶中都保守的五个氨基酸,它们催化酪氨酸亲核试剂对可裂磷酸酯的攻击。催化结构域由十个α螺旋和一个三链β折叠组成,其结构类似于通过拓扑异构酶IB样机制起作用的位点特异性重组酶的催化结构域。尽管总体序列相似性很低,但拓扑异构酶催化五元组在重组酶的三级结构中是保守的。这意味着IB型拓扑异构酶和重组酶的催化结构域源自共同的祖先链转移酶。

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