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Origin-of-transfer sequences facilitate mobilisation of non-conjugative antimicrobial-resistance plasmids in Staphylococcus aureus

机译:转移起点序列可促进金黄色葡萄球菌中非共轭抗微生物质粒的动员

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Staphylococcus aureus is a common cause of hospital, community and livestock-associated infections and is increasingly resistant to multiple antimicrobials. A significant proportion of antimicrobial-resistance genes are plasmid-borne, but only a minority of S. aureus plasmids encode proteins required for conjugative transfer or Mob relaxase proteins required for mobilisation. The pWBG749 family ofS. aureus conjugative plasmids can facilitate the horizontal transfer of diverse antimicrobial-resistance plasmids that lack Mob genes. Here we reveal that these mobilisable plasmids carry copies of the pWBG749 origin-of-transfer (oriT) sequence and that these oriT sequences facilitate mobilisation by pWBG749. Sequences resembling the pWBG749 oriT were identified on half of all sequenced S. aureus plasmids, including the most prevalent large antimicrobial-resistance/virulence-gene plasmids, pIB485, pMW2 and pUSA300HOUMR. oriT sequences formed five subfamilies with distinct inverted-repeat-2 (IR2) sequences. pWBG749-family plasmids encoding each IR2 were identified and pWBG749 mobilisation was found to be specific for plasmids carrying matching IR2 sequences. Specificity of mobilisation was conferred by a putative ribbon-helix-helix-protein gene smpO. Several plasmids carried 2-3 oriT variants and pWBG749-mediated recombination occurred between distinct oriT sites during mobilisation. These observations suggest this relaxase-in trans mechanism of mobilisation by pWBG749-family plasmids is a common mechanism of plasmid dissemination in S. aureus.
机译:金黄色葡萄球菌是医院,社区和牲畜相关感染的常见原因,并且对多种抗菌素的耐药性越来越高。很大比例的抗微生物抗性基因是质粒携带的,但只有少数金黄色葡萄球菌质粒编码共轭转移所需的蛋白质或动员所需的Mob松弛酶蛋白质。 pWBG749系列。金黄色葡萄球菌结合质粒可以促进缺乏Mob基因的多种抗微生物质粒的水平转移。在这里,我们揭示了这些可动员的质粒带有pWBG749转移起点(oriT)序列的副本,并且这些oriT序列有助于pWBG749的动员。在所有测序的金黄色葡萄球菌质粒的一半中鉴定出类似于pWBG749 oriT的序列,包括最流行的大型抗微生物/毒力基因质粒pIB485,pMW2和pUSA300HOUMR。 oriT序列形成五个亚家族,分别具有不同的反向重复2(IR2)序列。鉴定了编码每个IR2的pWBG749家族质粒,发现pWBG749动员对于携带匹配IR2序列的质粒是特异性的。动员的特异性由推定的带状-螺旋-螺旋-蛋白质基因smpO赋予。几个带有2-3个oriT变异体的质粒,在动员期间,在不同的oriT位点之间发生了pWBG749介导的重组。这些观察结果表明,pWBG749-家族质粒动员的这种松弛酶-反式反式机制是金黄色葡萄球菌中质粒散布的常见机制。

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