首页> 外文期刊>Frontiers in Microbiology >The Type IV Secretion System of ICE Afe1: Formation of a Conjugative Pilus in Acidithiobacillus ferrooxidans
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The Type IV Secretion System of ICE Afe1: Formation of a Conjugative Pilus in Acidithiobacillus ferrooxidans

机译:ICE Afe 1的IV型分泌系统:亚铁硫杆菌中的共轭毛lu的形成

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The dispersal of mobile genetic elements and their gene cargo relies on type IV secretion systems (T4SS). In this work the ICE Afe 1 Tra-type T4SS nanomachine, encoded in the publicly available genome of Acidithiobacillus ferrooxidans ATCC 23270 ~(TY), was characterized in terms of its organization, conservation, expression and mating bridge formation. Twenty-one conjugative genes grouped in four genetic clusters encode the ICE Afe 1 T4SS, containing all the indispensable functions for the formation and stabilization of the pili and for DNA processing. The clusters’ organization resembles that of other mobile genetic elements (such as plasmids and integrative and conjugative elements–ICEs). Sequence conservation, genetic organization and distribution of the tra system in the genomes of other sequenced Acidithiobacillus spp. suggests that the ICE Afe 1 T4SS could mediate the lateral gene transfer between related bacteria. All ICE Afe 1 T4SS genes are transcriptionally active and expressed from four independent operons. The transcriptional levels of selected marker genes increase in response to Mitomycin C treatment, a DNA damage elicitor that has acknowledged stimulatory effects on excision rates and gene expression of other ICEs, including ICE Afe 1. Using a tailor-made pilin-antiserum against ICE Afe 1 T4SS TraA pilin and epifluorescence microscopy, the presence of the conjugative pili on the cell surface of A. ferrooxidans could be demonstrated. Additionally, immunodetection assays, by immunogold, allowed the identification of pili-like extracellular structures. Together, the results obtained in this work demonstrate that the ICE Afe 1 T4SS is phylogenetically conserved within the taxon, is expressed at mRNA and protein levels in vivo in the A. ferrooxidans type strain, and produces a pili-like structure of extracellular and intercellular localization in this model acidophile, supporting its functionality. Additional efforts will be required to prove conjugation of the ICE Afe 1 or parts of this element through the cognate T4SS.
机译:流动遗传元件及其基因的散布依赖于IV型分泌系统(T4SS)。在这项工作中,ICE Afe 1 Tra型T4SS纳米机器被编码在可公开获得的铁氧化酸硫硫杆菌ATCC 23270〜(TY)基因组中,其组织,保守性,表达和交配桥形成的特征。四个基因簇中的二十一个接合基因编码ICE Afe 1 T4SS,其包含菌毛形成和稳定以及DNA加工的所有必不可少的功能。集群的组织类似于其他移动遗传元件(例如质粒以及整合和结合元件-ICEs)的组织。在其他测序的嗜酸硫杆菌属物种的基因组中,tra系统的序列保守,遗传组织和分布。提示ICE Afe 1 T4SS可以介导相关细菌之间的横向基因转移。所有ICE Afe 1 T4SS基因均具有转录活性,并由四个独立的操纵子表达。选定的标记基因的转录水平响应丝裂霉素C处理而增加,丝裂霉素C是一种DNA损伤引发剂,已被证实对包括ICE Afe 1在内的其他ICE的切除率和基因表达具有刺激作用。 1 T4SS TraA菌毛素和落射荧光显微镜检查可以证明在氧化铁农杆菌的细胞表面存在共轭菌毛。另外,通过免疫金的免疫检测测定允许鉴定菌毛样细胞外结构。在一起,这项工作中获得的结果表明,ICE Afe 1 T4SS在类群内系统发育上保守,在A.ferrooxidans型菌株中在体内以mRNA和蛋白质水平表达,并产生细胞外和细胞间的菌毛状结构。该模型在嗜酸菌中的定位,支持其功能。通过关联的T4SS,将需要进一步的努力来证明ICE Afe 1或该元素的某些部分的缀合。

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