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新月柄杆菌中拓扑异构酶IV parC和parE基因对细胞周期进程和发育调控的需求

Requirement of topoisomerase IV parC and parE genes for cell cycle progression and developmental regulation in Caulobacter crescentus.

作者信息

Ward D, Newton A

机构信息

Department of Molecular Biology, Princeton University, NJ 08544, USA.

出版信息

Mol Microbiol. 1997 Dec;26(5):897-910. doi: 10.1046/j.1365-2958.1997.6242005.x.

Abstract

We have identified the parC and parE genes encoding DNA topoisomerase IV (Topo IV) in Caulobacter crescentus. We have also characterized the effect of conditional Topo IV mutations on cell division and morphology. Topo IV mutants of C. crescentus are unlike mutants of Escherichia coli and S. typhimurium, which form long filamentous cells that are defective in nucleoid segregation and divide frequently to produce anucleate cells. Topo IV mutants of C. crescentus are highly pinched at multiple sites (cell separation phenotype) and they do not divide to produce cells lacking DNA. These results suggest unique regulatory mechanisms coupling nucleoid partitioning and cell division in this aquatic bacterium. In addition, distinctive nucleoid-partitioning defects are not apparent in C. crescentus Topo IV mutants as they are in E. coli and S. typhimurium. However, abnormal nucleoid segregation in parE mutant cells could be demonstrated in a genetic background containing a conditional mutation in the C. crescentus ftsA gene, an early cell division gene that is epistatic to parE for cell division and growth. We discuss these results in connection with the possible roles of C. crescentus Topo IV in the regulation of cell division, chromosome partitioning, and late events in polar morphogenesis. Although the ParC and ParE subunits of Topo IV are very similar in sequence to the GyrA and GyrB subunits of DNA gyrase, we have used DNA sequence analysis to identify a highly conserved 'GyrA box' sequence that is unique to the GyrA proteins and may serve as a hallmark of the GyrA protein family.

摘要

我们已经在新月柄杆菌中鉴定出编码DNA拓扑异构酶IV(Topo IV)的parC和parE基因。我们还研究了条件性Topo IV突变对细胞分裂和形态的影响。新月柄杆菌的Topo IV突变体与大肠杆菌和鼠伤寒沙门氏菌的突变体不同,后者形成长丝状细胞,在类核分离方面存在缺陷,并频繁分裂产生无核细胞。新月柄杆菌的Topo IV突变体在多个位点高度缢缩(细胞分离表型),且它们不会分裂产生缺乏DNA的细胞。这些结果表明,在这种水生细菌中,存在将类核分配与细胞分裂联系起来的独特调控机制。此外,新月柄杆菌Topo IV突变体中没有像大肠杆菌和鼠伤寒沙门氏菌那样明显的独特类核分配缺陷。然而,在含有新月柄杆菌ftsA基因条件性突变的遗传背景中,可以证明parE突变体细胞中存在异常的类核分离,ftsA是一个早期细胞分裂基因,在细胞分裂和生长方面对parE具有上位性。我们结合新月柄杆菌Topo IV在细胞分裂调控、染色体分配以及极性形态发生后期事件中的可能作用来讨论这些结果。尽管Topo IV的ParC和ParE亚基在序列上与DNA促旋酶的GyrA和GyrB亚基非常相似,但我们利用DNA序列分析鉴定出了一个高度保守且独特的“GyrA框”序列,该序列是GyrA蛋白所特有的,可能是GyrA蛋白家族的一个标志。

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