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Tn3 解离酶介导的位点特异性松弛与重组:对同向排列的 res 位点间 DNA 路径的识别

Site-specific relaxation and recombination by the Tn3 resolvase: recognition of the DNA path between oriented res sites.

作者信息

Krasnow M A, Cozzarelli N R

出版信息

Cell. 1983 Apr;32(4):1313-24. doi: 10.1016/0092-8674(83)90312-4.

Abstract

We studied the dynamics of site-specific recombination by the resolvase encoded by the Escherichia coli transposon Tn3. The pure enzyme recombined supercoiled plasmids containing two directly repeated recombination sites, called res sites. Resolvase is the first strictly site-specific topoisomerase. It relaxed only plasmids containing directly repeated res sites; substrates with zero, one or two inverted sites were inert. Even when the proximity of res sites was ensured by catenation of plasmids with a single site, neither relaxation nor recombination occurred. The two circular products of recombination were catenanes interlinked only once. These properties of resolvase require that the path of the DNA between res sites be clearly defined and that strand exchange occur with a unique geometry. A model in which one subunit of a dimeric resolvase is bound at one res site, while the other searches along adjacent DNA until it encounters the second site, would account for the ability of resolvase to distinguish intramolecular from intermolecular sites, to sense the relative orientation of sites and to produce singly interlinked catenanes. Because resolvase is a type 1 topoisomerase, we infer that it makes the required duplex bDNA breaks of recombination one strand at a time.

摘要

我们研究了由大肠杆菌转座子Tn3编码的解离酶介导的位点特异性重组动力学。纯酶能使含有两个同向重复重组位点(称为res位点)的超螺旋质粒发生重组。解离酶是首个严格位点特异性的拓扑异构酶。它仅能使含有同向重复res位点的质粒松弛;含有零个、一个或两个反向位点的底物则无活性。即便通过单一位点的质粒连环化确保了res位点的邻近性,松弛反应和重组反应均未发生。重组的两个环状产物是仅一次连环的连环体。解离酶的这些特性要求res位点之间的DNA路径明确界定,且链交换以独特的几何结构发生。在一个模型中,二聚体解离酶的一个亚基结合在一个res位点上,而另一个亚基沿着相邻DNA进行搜索,直至遇到第二个位点,这可以解释解离酶区分分子内和分子间位点、感知位点相对取向以及产生单连环连环体的能力。由于解离酶是1型拓扑异构酶,我们推断它每次仅使重组所需的双链DNA断裂一条链。

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