首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The outer-membrane protein TolC of Vibrio cholerae serves as a second cell-surface receptor for the VP3 phage
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The outer-membrane protein TolC of Vibrio cholerae serves as a second cell-surface receptor for the VP3 phage

机译:霍乱弧菌的外膜蛋白TolC充当VP3噬菌体的第二个细胞表面受体

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摘要

Receptor recognition is a key step in the initiation of phage infection. Previously, we found that VP3, the T7 family phage of the Vibrio cholerae serogroup O1 biotype El Tor, can adsorb the core oligosaccharide (OS) of lipopolysaccharides of V. cholerae. However, some wildtype strains of V. cholerae possessing the intact OS gene cluster still have VP3 binding but are resistant to VP3 infection. Moreover, an OS gene–deletion mutant still exhibits weak VP3 binding, suggesting multiple factors are possibly involved in VP3 binding to V. cholerae. Here, we report that the outer-membrane protein TolC of V. cholerae is involved in the host adsorption of VP3. We observed that TolC directly interacts with the VP3 tail fiber protein gp44 and its C-terminal domains, and we also found that three amino acid residues in the outside loops of TolC, at positions 78, 290, and 291, are critical for binding to gp44. Among the VP3-resistant wildtype V. cholerae strains, frequent amino acid residue mutations were observed in the loops around the sites 78, 290, and 291, which were predicted to be exposed to the cell surface. These findings reveal a co-receptor–binding mechanism for VP3 infection of V. cholerae and that both outer-membrane TolC and OS are necessary for successful VP3 infection of V. cholerae. We conclude that mutations on the outside loops of the receptor may confer V. cholerae strains with VP3 phage resistance, enabling these strains to survive in environments containing VP3 or related phages.
机译:受体识别是启动噬菌体感染的关键步骤。以前,我们发现VP3,霍乱弧菌血清群O1生物型El Tor的T7家族噬菌体,可以吸附霍乱弧菌脂多糖的核心寡糖(OS)。然而,一些具有完整OS基因簇的霍乱弧菌野生型菌株仍具有VP3结合但对VP3感染具有抗性。此外,一个OS基因缺失突变体仍然显示弱的VP3结合,表明VP3与霍乱弧菌的结合可能涉及多种因素。在这里,我们报告霍乱弧菌的外膜蛋白TolC参与VP3的宿主吸附。我们观察到TolC与VP3尾部纤维蛋白gp44及其C末端结构域直接相互作用,并且我们还发现TolC外环中位于位置78、290和291的三个氨基酸残基对于结合至gp44。在抗VP3的野生型霍乱弧菌菌株中,在位点78、290和291周围的环中观察到频繁的氨基酸残基突变,这些突变预计会暴露于细胞表面。这些发现揭示了霍乱弧菌VP3感染的共受体结合机制,而成功的霍乱弧菌VP3感染需要外膜TolC和OS。我们得出的结论是,受体外环的突变可能使霍乱弧菌菌株具有VP3噬菌体抗性,使这些菌株能够在含有VP3或相关噬菌体的环境中生存。

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