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质粒 R1 的转移操纵子延伸超出 finO 进入下游复制基因。

The transfer operon of plasmid R1 extends beyond finO into the downstream replication genes.

机构信息

University of Graz, Institute of Molecular Biosciences, Humboldtstrasse 50, A-8010 Graz, Austria.

出版信息

Plasmid. 2011 Mar;65(2):150-8. doi: 10.1016/j.plasmid.2010.12.003. Epub 2010 Dec 8.

Abstract

finO is the final gene in the 35.4 kb transfer operon of IncFI plasmid F that is known to be involved in self-conjugative transfer. The genetic region distal to finO separates the conjugation and replication control modules of IncFII plasmid R100 and carries uncharacterized genes not found in plasmid F. However, comparison of the R100 gene organization with database entries of F-like plasmids suggests its broad conservation. We determined the DNA sequence of this region of IncFII plasmid R1 and studied its transcriptional organization. We find that transcription occurs through the entire gene region spanning from finO to the 5' regulatory region of copB. The region lacks independent promoter activity and transcription is co-regulated with the adjacent transfer operon. We show that this extended transcriptional organization beyond finO is shared by plasmid R100. These findings support the hypothesis that gene products coexpressed from the finO-distal region in F-like plasmids are advantageous under some conditions when conjugative DNA is exchanged.

摘要

finO 是 IncFI 质粒 F 中 35.4kb 转移操纵子的最后一个基因,该基因已知参与自我共轭转移。finO 远端的遗传区域将 IncFII 质粒 R100 的接合和复制控制模块分开,并携带质粒 F 中未发现的未鉴定基因。然而,R100 基因组织与 F 样质粒数据库条目的比较表明其广泛保守。我们确定了 IncFII 质粒 R1 的该区域的 DNA 序列,并研究了其转录组织。我们发现转录通过跨越 finO 到 copB 的 5'调控区的整个基因区域发生。该区域缺乏独立的启动子活性,转录与相邻的转移操纵子共同调节。我们表明,质粒 R100 也具有这种 finO 远端的扩展转录组织。这些发现支持了这样的假设,即在 F 样质粒中从 finO 远端共表达的基因产物在某些条件下有利于当共轭 DNA 被交换时。

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