Shuman S
Molecular Biology Program, Sloan-Kettering Institute, New York, NY 10021, USA.
Biochim Biophys Acta. 1998 Oct 1;1400(1-3):321-37. doi: 10.1016/s0167-4781(98)00144-4.
Vaccinia topoisomerase has proven to be an instructive model system for mechanistic studies of the type IB family of DNA topoisomerases. The catalytically relevant functional groups at the active site and the circumferential topoisomerase-DNA interface were correctly surmised by mutational and footprint analysis of vaccinia topoisomerase in advance of structure determinations by X-ray crystallography. It is now evident from multiple crystal structures that the catalytic domains of type IB topoisomerases and site specific recombinases derive from a common ancestral strand transferase capable of forming a DNA-(3'-phosphotyrosyl)-enzyme intermediate. A constellation of conserved amino acids catalyzes attack of the tyrosine nucleophile on the scissile phosphate. Domain dynamics and DNA-induced conformational changes within the catalytic domain are likely to play a role in triggering strand scission and coordinating the strand exchange or strand passage steps.
痘苗拓扑异构酶已被证明是用于DNA拓扑异构酶IB家族机制研究的一个具有启发性的模型系统。在通过X射线晶体学确定结构之前,通过痘苗拓扑异构酶的突变和足迹分析,正确推测出了活性位点以及周围拓扑异构酶 - DNA界面处与催化相关的官能团。现在从多个晶体结构中可以明显看出,IB型拓扑异构酶和位点特异性重组酶的催化结构域源自一种能够形成DNA -(3'-磷酸酪氨酸)-酶中间体的共同祖先链转移酶。一组保守氨基酸催化酪氨酸亲核试剂对可裂磷酸酯的攻击。催化结构域内的结构域动力学和DNA诱导的构象变化可能在触发链断裂以及协调链交换或链通过步骤中发挥作用。