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Tn 1 transposition in the course of natural transformation enables horizontal antibiotic resistance spread in Acinetobacter baylyi

机译:TN <斜视> 1 在天然转化过程中的转子使得水平抗生素耐药性在<斜视>百叶腺素

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Transposons are genetic elements that change their intracellular genomic position by transposition and are spread horizontally between bacteria when located on plasmids. It was recently discovered that transposition from fully heterologous DNA also occurs in the course of natural transformation. Here, we characterize the molecular details and constraints of this process using the replicative transposon Tn 1 and the naturally competent bacterium Acinetobacter baylyi . We find that chromosomal insertion of Tn 1 by transposition occurs at low but detectable frequencies and preferably around the A. baylyi terminus of replication. We show that Tn 1 transposition is facilitated by transient expression of the transposase and resolvase encoded by the donor DNA. RecA protein is essential for the formation of a circular, double-stranded cytoplasmic intermediate from incoming donor DNA, and RecO is beneficial but not essential in this process. Absence of the recipient RecBCD nuclease stabilizes the double-stranded intermediate. Based on these results, we suggest a mechanistic model for transposition during natural transformation.
机译:转座子是通过转置改变细胞内基因组位置的遗传元素,并且在位于质粒上时水平散布。最近发现,在自然转化过程中也发生了完全异源DNA的转子。在此,我们使用复制转座TN1和天然态性的细菌性贝利杆菌来表征该方法的分子细节和约束。我们发现通过转座素的TN 1的染色体插入在低但可检测的频率下发生,并且优选地围绕A.百叶窗的复制末端。我们表明,通过供体DNA编码的转座酶和腐蚀性酶的瞬时表达,促进了TN1转置。 RECA蛋白对于从进入的供体DNA形成圆形,双链细胞质中间体是必不可少的,并且RECO是有益的,但在该过程中不是必需的。不存在受体RecBCD核酸酶稳定双链中间体。基于这些结果,我们建议在自然转型期间进行转子的机械模型。

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