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Random mutagenesis of Legionella pneumophila reveals genes associated with lipopolysaccharide synthesis and recognition by typing monoclonal antibodies

机译:嗜肺军团菌的随机诱变通过键入单克隆抗体揭示与脂多糖合成和识别有关的基因

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Aims: To use random mutagenesis for the characterization of Legionella pneumophila lipopolysaccharide (LPS) components and serotypes. Methods and Results: Five strains belonging to different serogroups and/or monoclonal subgroups were mutagenized using a mini-Tn10 transposon. Exactly 11 819 mutants were checked for alterations in LPS using at least 11 monoclonal antibodies (mAbs) that define L. pneumophila serotypes. Among the mutants, five different mini-Tn10 insertions were identified. Four mutants originating from serogroup-1 did not lose their serogroup-specific epitope, but did sustain subtler changes that resulted in switches to different mAb subgroups. In contrast, a mutant from serogroup-6 lost its serogroup-specific epitope, while retaining a serogroup-cross-reacting epitope. Conclusions: Random mutagenesis is a valuable tool for LPS epitope mapping. While some characteristics of L. pneumophila LPS can be altered, others appear resistant to mutagenesis. This underscores both the flexibility and rigidity of LPS architecture in L. pneumophila. Significance and Impact of the Study: Losses of L. pneumophila LPS epitopes can result in new serotypes, changes that might escape detection by current DNA-based typing schemes. But, as the frequency of these changes is rare, based upon our observations, serotyping should remain an important tool for identifying L. pneumophila in water systems that are implicated in human infection.
机译:目的:使用随机诱变来表征嗜肺军团菌脂多糖(LPS)的成分和血清型。方法和结果:使用mini-Tn10转座子诱变了5个属于不同血清型和/或单克隆亚组的菌株。使用至少11种定义嗜肺乳杆菌血清型的单克隆抗体(mAb),检查了11 819个突变体中LPS的变化。在突变体中,鉴定出五个不同的mini-Tn10插入。源自血清群1的四个突变体不会丢失其血清群特异性表位,但确实维持了微妙的变化,从而导致切换至不同的mAb亚组。相反,来自血清群6的突变体失去了其血清群特异性表位,而保留了与血清群交叉反应的表位。结论:随机诱变是LPS表位作图的有价值的工具。虽然嗜肺乳杆菌LPS的某些特征可以改变,但其他特征似乎对诱变具有抗性。这强调了肺炎链球菌中LPS体系结构的灵活性和刚性。该研究的意义和影响:嗜肺乳杆菌LPS表位的丧失可能导致新的血清型,这种变化可能会避开当前基于DNA的分型方案的检测。但是,由于这些变化的频率很少,根据我们的观察,血清分型应仍是鉴定与人类感染有关的水系统中嗜肺乳杆菌的重要工具。

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