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Yersinia enterocolitica-Specific Infection by Bacteriophages TG1 and ϕR1-RT Is Dependent on Temperature-Regulated Expression of the Phage Host Receptor OmpF

机译:噬菌体TG1和ϕR1-RT对小肠结肠炎耶尔森氏菌的特异性感染取决于噬菌体宿主受体OmpF的温度调节表达。

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摘要

Bacteriophages present huge potential both as a resource for developing novel tools for bacterial diagnostics and for use in phage therapy. This potential is also valid for bacteriophages specific for Yersinia enterocolitica. To increase our knowledge of Y. enterocolitica-specific phages, we characterized two novel yersiniophages. The genomes of the bacteriophages vB_YenM_TG1 (TG1) and vB_YenM_ϕR1-RT (ϕR1-RT), isolated from pig manure in Canada and from sewage in Finland, consist of linear double-stranded DNA of 162,101 and 168,809 bp, respectively. Their genomes comprise 262 putative coding sequences and 4 tRNA genes and share 91% overall nucleotide identity. Based on phylogenetic analyses of their whole-genome sequences and large terminase subunit protein sequences, a genus named Tg1virus within the family Myoviridae is proposed, with TG1 and ϕR1-RT (R1RT in the ICTV database) as member species. These bacteriophages exhibit a host range restricted to Y. enterocolitica and display lytic activity against the epidemiologically significant serotypes O:3, O:5,27, and O:9 at and below 25°C. Adsorption analyses of lipopolysaccharide (LPS) and OmpF mutants demonstrate that these phages use both the LPS inner core heptosyl residues and the outer membrane protein OmpF as phage receptors. Based on RNA sequencing and quantitative proteomics, we also demonstrate that temperature-dependent infection is due to strong repression of OmpF at 37°C. In addition, ϕR1-RT was shown to be able to enter into a pseudolysogenic state. Together, this work provides further insight into phage-host cell interactions by highlighting the importance of understanding underlying factors which may affect the abundance of phage host receptors on the cell surface.
机译:噬菌体作为开发细菌诊断新工具和用于噬菌体治疗的资源,具有巨大的潜力。该潜力对于肠小肠结肠炎耶尔森氏菌特异的噬菌体也是有效的。为了增加我们对小肠结肠炎耶尔森氏菌特定噬菌体的了解,我们鉴定了两种新型的耶尔噬菌体。从加拿大的猪粪和芬兰的污水中分离出的噬菌体vB_YenM_TG1(TG1)和vB_YenM_ϕR1-RT(ϕR1-RT)的基因组分别由162101和168809 bp的线性双链DNA组成。他们的基因组包含262个推定的编码序列和4个tRNA基因,并具有91%的整体核苷酸同一性。基于对它们的全基因组序列和大末端酶亚基蛋白质序列的系统发育分析,提出了一种在肌病毒科中名为Tg1病毒的属,其中TG1和ϕR1-RT(ICTV数据库中的R1RT)为成员物种。这些噬菌体的宿主范围仅限于小肠结肠炎耶尔森氏菌,并且在25°C以下(含)以下对O:3,O:5,27和O:9的流行病学血清型具有裂解活性。脂多糖(LPS)和OmpF突变体的吸附分析表明,这些噬菌体同时使用LPS内核七糖基残基和外膜蛋白OmpF作为噬菌体受体。基于RNA测序和定量蛋白质组学,我们还证明了温度依赖性感染是由于在37°C时OmpF的强烈抑制所致。另外,ϕ R1-RT被证明能够进入假致原状态。总之,这项工作通过强调了解可能影响细胞表面噬菌体宿主受体丰度的潜在因素的重要性,从而提供了对噬菌体-宿主细胞相互作用的进一步见解。

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