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拓扑异构酶III在一条不同于RuvABC的重组途径中的作用。

A role for topoisomerase III in a recombination pathway alternative to RuvABC.

作者信息

Lopez Christopher R, Yang Shirley, Deibler Richard W, Ray Starlight A, Pennington Jeanine M, Digate Russell J, Hastings P J, Rosenberg Susan M, Zechiedrich E Lynn

机构信息

Interdepartmental Program in Cell and Molecular Biology, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

Mol Microbiol. 2005 Oct;58(1):80-101. doi: 10.1111/j.1365-2958.2005.04812.x.

Abstract

The physiological role of topoisomerase III is unclear for any organism. We show here that the removal of topoisomerase III in temperature sensitive topoisomerase IV mutants in Escherichia coli results in inviability at the permissive temperature. The removal of topoisomerase III has no effect on the accumulation of catenated intermediates of DNA replication, even when topoisomerase IV activity is removed. Either recQ or recA null mutations, but not helD null or lexA3, partially rescued the synthetic lethality of the double topoisomerase III/IV mutant, indicating a role for topoisomerase III in recombination. We find a bias against deleting the gene encoding topoisomerase III in ruvC53 or DeltaruvABC backgrounds compared with the isogenic wild-type strains. The topoisomerase III RuvC double mutants that can be constructed are five- to 10-fold more sensitive to UV irradiation and mitomycin C treatment and are twofold less efficient in transduction efficiency than ruvC53 mutants. The overexpression of ruvABC allows the construction of the topoisomerase III/IV double mutant. These data are consistent with a role for topoisomerase III in disentangling recombination intermediates as an alternative to RuvABC to maintain the stability of the genome.

摘要

拓扑异构酶III在任何生物体中的生理作用都不清楚。我们在此表明,在大肠杆菌温度敏感型拓扑异构酶IV突变体中去除拓扑异构酶III会导致在允许温度下无法存活。即使去除拓扑异构酶IV的活性,去除拓扑异构酶III对DNA复制的连环中间体的积累也没有影响。recQ或recA基因敲除突变,但helD基因敲除或lexA3突变则不能,部分挽救了双拓扑异构酶III/IV突变体的合成致死性,表明拓扑异构酶III在重组中起作用。我们发现,与同基因野生型菌株相比,在ruvC53或DeltaruvABC背景下,删除编码拓扑异构酶III的基因存在偏向性。可以构建的拓扑异构酶III RuvC双突变体对紫外线照射和丝裂霉素C处理的敏感性比ruvC53突变体高5至10倍,转导效率比ruvC53突变体低两倍。ruvABC的过表达允许构建拓扑异构酶III/IV双突变体。这些数据与拓扑异构酶III在解开重组中间体中作为RuvABC的替代物以维持基因组稳定性的作用一致。

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