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Transcriptional Organization of the Stability Module of Broad-Host-Range Plasmid RA3, from the IncU Group

机译:来自INCU组的广泛宿主范围质粒RA3的稳定性模块的转录组织

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The broad-host-range (BHR) conjugative plasmids have developed diverse adaptive mechanisms defining the range of their promiscuity. The BHR conjugative RA3 plasmid, the archetype of the IncU group, can transfer between, replicate in, and be maintained in representatives of Alpha -, Beta -, and Gammaproteobacteria . Its stability module encompasses ten open reading frames (ORFs) apparently organized into five operons, all transcribed in the same direction from several strong promoters that are tightly regulated either by autorepressors or by global plasmid-encoded regulators. In this paper, we demonstrate that owing to an efficient RNA polymerase (RNAP) read-through, the transcription from the first promoter, orf02p , may continue through the whole module. Moreover, an analysis of mRNA produced from the wild-type (WT) stability module and its deletion variants deprived of particular internal transcription initiation sites reveals that in fact each operon may be transcribed from any upstream promoter, giving rise to multicistronic transcripts of variable length and creating an additional level of gene expression control by transcript dosage adjustment. The gene expression patterns differ among various hosts, indicating that promoter recognition, regulation, and the RNAP read-through mechanisms are modulated in a species-specific manner.IMPORTANCE The efficiently disseminating conjugative or mobilizable BHR plasmids play key roles in the horizontal spread of genetic information between closely related and phylogenetically distant species, which can be harmful from the medical, veterinary, or industrial point of view. Understanding the mechanisms determining the plasmid’s ability to function in diverse hosts is essential to help limit the spread of undesirable plasmid-encoded traits, e.g., antibiotic resistance. The range of a plasmid’s promiscuity depends on the adaptations of its transfer, replication, and stability functions to the various hosts. IncU plasmids, with the archetype plasmid RA3, are considered to constitute a reservoir of antibiotic resistance genes in aquatic environments; however, the molecular mechanisms determining their adaptability to a broad range of hosts are rather poorly characterized. Here, we present the transcriptional organization of the stability module and show that the gene transcript dosage effect is an important determinant of the stable maintenance of RA3 in different hosts.
机译:广泛的宿主范围(BHR)缀合质粒已经开发出不同的自适应机制,限定了它们的滥交范围。 BHR缀合的RA3质粒,INCU组的原型可以在α,β - 和γ-和γ-和γ-和伽血杆菌的代表之间转移。其稳定性模块包括十个开放式阅读框架(ORF)明显组织成五个操纵子,所有这些操纵子都与自动调节器或通过全局质粒编码的调节剂紧密调节的几个强启动子之间的相同方向转录。在本文中,我们证明由于高效的RNA聚合酶(RNAP)读取,来自第一启动子,ORF02P的转录,可以通过整个模块继续。此外,从野生型(WT)稳定模块和缺失特定内部转录起始位点的缺失变体的MRNA分析显示,实际上每个操纵子可以从任何上游启动子转录,从而产生可变长度的多时钟转录物通过转录剂量调节产生额外的基因表达对照水平。基因表达模式不同的各个宿主之间不同,表明启动子识别,调节和RNAP读取机制以特异性的方式调节。分析有效筛选的缀合或可移动的BHR质粒在遗传般的横向扩散中起关键作用。与医疗,兽医或工业观点密切相关和密切相关和遥远的物种之间的信息。理解确定质粒质粒在不同宿主中起作用的机制对于有助于限制不希望的质粒编码性状的扩散,例如抗生素耐药性是必不可少的。质粒滥交的范围取决于其转移,复制和稳定性函数的调整到各种主机。用原型质粒RA3的INCU质粒被认为是在水生环境中构成抗生素抗性基因的储层;然而,确定它们对广泛宿主的适应性的分子机制表现不佳。在这里,我们介绍了稳定性模块的转录组织,并表明基因转录剂量效应是不同宿主中Ra3稳定维持的重要决定因素。

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