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首页> 外文期刊>Frontiers in Microbiology >Phase Variable Expression of a Single Phage Receptor in Campylobacter jejuni NCTC12662 Influences Sensitivity Toward Several Diverse CPS-Dependent Phages
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Phase Variable Expression of a Single Phage Receptor in Campylobacter jejuni NCTC12662 Influences Sensitivity Toward Several Diverse CPS-Dependent Phages

机译:空肠弯曲杆菌NCTC12662中单个噬菌体受体的相变量表达影响对多种依赖CPS的噬菌体的敏感性

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摘要

Campylobacter jejuni NCTC12662 is sensitive to infection by many Campylobacter bacteriophages. Here we used this strain to investigate the molecular mechanism behind phage resistance development when exposed to a single phage and demonstrate how phase variable expression of one surface component influences phage sensitivity against many diverse C. jejuni phages. When C. jejuni NCTC12662 was exposed to phage F207 overnight, 25% of the bacterial cells were able to grow on a lawn of phage F207, suggesting that resistance develops at a high frequency. One resistant variant, 12662R, was further characterized and shown to be an adsorption mutant. Plaque assays using our large phage collection showed that seven out of 36 diverse capsular polysaccharide (CPS)-dependent phages could not infect 12662R, whereas the remaining phages formed plaques on 12662R with reduced efficiencies. Analysis of the CPS composition of 12662R by high-resolution magic angle spinning nuclear magnetic resonance (HR-MAS NMR) showed a diminished signal for O -methyl phosphoramidate (MeO P N), a phase variable modification of the CPS. This suggested that the majority of the 12662R population did not express this phase variable modification in the CPS, indicating that MeO P N serves as a phage receptor in NCTC12662. Whole genome analysis of 12662R showed a switch in the length of the phase variable homopolymeric G tract of gene 06810 , encoding a putative MeO P N-transferase located in the CPS locus, resulting in a non-functional protein. To confirm the role of 06810 in phage resistance development of NCTC12662, a 06810 knockout mutant in NCTC12662 was constructed and analyzed by HR-MAS NMR demonstrating the absence of MeO P N in the CPS of the mutant. Plaque assays using NCTC12662Δ 06810 demonstrated that seven of our CPS-dependent Campylobacter phages are dependent on the presence of MeO P N for successful infection of C. jejuni , whereas the remaining 29 phages infect independently of MeO P N, although with reduced efficiencies. Our data indicate that CPS-dependent phages uses diverse mechanisms for their initial interaction with their C. jejuni host.
机译:空肠弯曲杆菌NCTC12662对许多弯曲杆菌噬菌体的感染敏感。在这里,我们使用此菌株调查暴露于单个噬菌体时噬菌体抗性发展的分子机制,并证明一个表面成分的相变量表达如何影响噬菌体对多种空肠弯曲杆菌噬菌体的敏感性。当空肠弯曲菌NCTC12662暴露于噬菌体F207过夜时,25%的细菌细胞能够在噬菌体F207的草坪上生长,这表明耐药性以高频率发展。进一步鉴定了一种抗性变体12662R,并显示为吸附突变体。使用我们的大量噬菌体收集物进行噬菌斑测定,结果表明,在36种依赖荚膜多糖(CPS)的噬菌体中,有7个不能感染12662R,而其余噬菌体在12662R上形成噬菌斑,效率降低。通过高分辨率魔角旋转核磁共振(HR-MAS NMR)分析12662R的CPS组成,发现氨基磷酸O-甲基磷酸酯(MeO P N)的信号减弱,这是CPS的相变修饰。这表明大多数12662R群体在CPS中未表达此相变修饰,表明MeO P N在NCTC12662中充当噬菌体受体。对12662R的全基因组分析表明,该基因06810的相变均聚G链长度发生变化,该编码位于CPS位点的推定的MeO P N-转移酶编码,导致产生非功能蛋白。为了确认06810在NCTC12662的噬菌体抗性发展中的作用,构建了NCTC12662中的06810敲除突变体,并通过HR-MAS NMR进行了分析,表明该突变体的CPS中不存在MeO PN。使用NCTC12662Δ06810进行的噬菌斑测定表明,我们的CPS依赖性弯曲杆菌噬菌体中有七个依赖于MeO P N的成功感染空肠弯曲杆菌,而其余29个噬菌体独立于MeO P N感染,尽管效率降低。我们的数据表明,依赖CPS的噬菌体使用多种机制与其空肠弯曲杆菌宿主进行初始相互作用。

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