首页> 外文OA文献 >Differences in Resolution of mwr-Containing Plasmid Dimers Mediated by the Klebsiella pneumoniae and Escherichia coli XerC Recombinases: Potential Implications in Dissemination of Antibiotic Resistance Genes
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Differences in Resolution of mwr-Containing Plasmid Dimers Mediated by the Klebsiella pneumoniae and Escherichia coli XerC Recombinases: Potential Implications in Dissemination of Antibiotic Resistance Genes

机译:肺炎克雷伯氏菌和大肠杆菌XerC重组酶介导的包含mwr的质粒二聚体的分辨率差异:传播抗生素抗性基因的潜在意义。

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摘要

Xer-mediated dimer resolution at the mwr site of the multiresistance plasmid pJHCMW1 is osmoregulated in Escherichia coli containing either the Escherichia coli Xer recombination machinery or Xer recombination elements from K. pneumoniae. In the presence of K. pneumoniae XerC (XerCKp), the efficiency of recombination is lower than that in the presence of the E. coli XerC (XerCEc) and the level of dimer resolution is insufficient to stabilize the plasmid, even at low osmolarity. This lower efficiency of recombination at mwr is observed in the presence of E. coli or K. pneumoniae XerD proteins. Mutagenesis experiments identified a region near the N terminus of XerCKp responsible for the lower level of recombination catalyzed by XerCKp at mwr. This region encompasses the second half of the predicted α-helix B and the beginning of the predicted α-helix C. The efficiencies of recombination at other sites such as dif or cer in the presence of XerCKp or XerCEc are comparable. Therefore, XerCKp is an active recombinase whose action is impaired on the mwr recombination site. This characteristic may result in restriction of the host range of plasmids carrying this site, a phenomenon that may have important implications in the dissemination of antibiotic resistance genes.
机译:多抗质粒pJHCMW1的mwr位点的Xer介导的二聚体分辨率在含有大肠杆菌Xer重组机器或肺炎克雷伯菌的Xer重组元件的大肠杆菌中被渗透调节。在肺炎克雷伯菌XerC(XerCKp)的存在下,重组效率比在大肠杆菌XerC(XerCEc)的情况下低,并且即使在低渗透压下,二聚体的分辨率也不足以稳定质粒。在大肠杆菌或肺炎克雷伯菌XerD蛋白存在下,观察到mwr重组效率较低。诱变实验确定了XerCKp N末端附近的区域,该区域负责XerCKp在mwr催化的重组水平较低。该区域涵盖了预测的α-螺旋B的后半部分和预测的α-螺旋C的开始。在XerCKp或XerCEc存在的情况下,在其他位点(例如dif或cer)的重组效率是可比的。因此,XerCKp是一种活性重组酶,其作用在mwr重组位点上受损。该特征可能导致携带该位点的质粒的宿主范围受到限制,这种现象可能对抗生素抗性基因的传播具有重要意义。

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