Phage tailspike modularity and horizontal gene transfer reveals specificity towards E. coli O-antigen serogroups
Модульность хвостовых шипов бактериофагов и горизонтальный перенос генов выявляют специфичность к серогруппам O-антигена E. coli
2023-08-07
SCID: 54.1/ttr9ryk9
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E. coli O-antigen serogroupsShiga toxin-producing E. colihorizontal gene transferphage tailspike modularityreceptor-binding proteins
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Abstract (AI)
BACKGROUND: The interaction between bacteriophages and their hosts is intricate and highly specific. Receptor-binding proteins (RBPs) of phages such as tail fibers and tailspikes initiate the infection process. These RBPs bind to diverse outer membrane structures, including the O-antigen, which is a serogroup-specific sugar-based component of the outer lipopolysaccharide layer of Gram-negative bacteria. Among the most virulent Escherichia coli strains is the Shiga toxin-producing E. coli (STEC) pathotype dominated by a subset of O-antigen serogroups. METHODS: Extensive phylogenetic and structural analyses were used to identify and validate specificity correlations between phage RBP subtypes and STEC O-antigen serogroups, relying on the principle of horizontal gene transfer as main driver for RBP evolution. RESULTS: We identified O-antigen specific RBP subtypes for seven out of nine most prevalent STEC serogroups (O26, O45, O103, O104, O111, O145 and O157) and seven additional E. coli serogroups (O2, O8, O16, O18, 4s/O22, O77 and O78). Eight phage genera (Gamaleya-, Justusliebig-, Kaguna-, Kayfuna-, Kutter-, Lederberg-, Nouzilly- and Uetakeviruses) emerged for their high proportion of serogroup-specific RBPs. Additionally, we reveal sequence motifs in the RBP region, potentially serving as recombination hotspots between lytic phages. CONCLUSION: The results contribute to a better understanding of mosaicism of phage RBPs, but also demonstrate a method to identify and validate new RBP subtypes for current and future emerging serogroups.
Key Findings
1
Eight phage genera showed a high proportion of serogroup-specific RBPs, highlighting extensive RBP modularity and mosaicism.
2
O-antigen-specific RBP subtypes were identified for seven of the nine most prevalent STEC serogroups: O26, O45, O103, O104, O111, O145, and O157.
3
Phylogenetic and structural analyses identified correlations between phage receptor-binding protein subtypes and specific E. coli O-antigen serogroups.
4
Sequence motifs potentially acting as recombination hotspots were detected in RBP regions, supporting horizontal gene transfer as a driver of RBP evolution.
5
Specific RBP subtypes were also identified for seven additional E. coli serogroups: O2, O8, O16, O18, 4s/O22, O77, and O78.
6
The study provides a method to identify and validate RBP subtypes for existing and emerging E. coli O-antigen serogroups.
Research Object
bacteriophage receptor-binding proteins (tail fibers and tailspikes) interacting with Escherichia coli O-antigen serogroups, particularly STEC serogroups
Research Subject
the serogroup specificity, modularity, horizontal-gene-transfer-driven evolution, and recombination hotspots of phage RBPs
Publication Details
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2023-08-07
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