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Branched Lateral Tail Fiber Organization in T5-Like Bacteriophages DT57C and DT571/2 is Revealed by Genetic and Functional Analysis

The T5-like siphoviruses DT57C and DT571/2, isolated from horse feces, are very closely related to each other, and most of their structural proteins are also nearly identical to T5 phage. Their LTFs (L-shaped tail fibers), however, are composed of two proteins, LtfA and LtfB, instead of the single L...

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Autores principales: Golomidova, Alla K., Kulikov, Eugene E., Prokhorov, Nikolai S., Guerrero-Ferreira, Ricardo С., Knirel, Yuriy A., Kostryukova, Elena S., Tarasyan, Karina K., Letarov, Andrey V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4728585/
https://www.ncbi.nlm.nih.gov/pubmed/26805872
http://dx.doi.org/10.3390/v8010026
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author Golomidova, Alla K.
Kulikov, Eugene E.
Prokhorov, Nikolai S.
Guerrero-Ferreira, Ricardo С.
Knirel, Yuriy A.
Kostryukova, Elena S.
Tarasyan, Karina K.
Letarov, Andrey V.
author_facet Golomidova, Alla K.
Kulikov, Eugene E.
Prokhorov, Nikolai S.
Guerrero-Ferreira, Ricardo С.
Knirel, Yuriy A.
Kostryukova, Elena S.
Tarasyan, Karina K.
Letarov, Andrey V.
author_sort Golomidova, Alla K.
collection PubMed
description The T5-like siphoviruses DT57C and DT571/2, isolated from horse feces, are very closely related to each other, and most of their structural proteins are also nearly identical to T5 phage. Their LTFs (L-shaped tail fibers), however, are composed of two proteins, LtfA and LtfB, instead of the single Ltf of bacteriophage T5. In silico and mutant analysis suggests a possible branched structure of DT57C and DT571/2 LTFs, where the LtfB protein is connected to the phage tail via the LtfA protein and with both proteins carrying receptor recognition domains. Such adhesin arrangement has not been previously recognized in siphoviruses. The LtfA proteins of our phages are found to recognize different host O-antigen types: E. coli O22-like for DT57C phage and E. coli O87 for DT571/2. LtfB proteins are identical in both phages and recognize another host receptor, most probably lipopolysaccharide (LPS) of E. coli O81 type. In these two bacteriophages, LTF function is essential to penetrate the shield of the host’s O-antigens. We also demonstrate that LTF-mediated adsorption becomes superfluous when the non-specific cell protection by O-antigen is missing, allowing the phages to bind directly to their common secondary receptor, the outer membrane protein BtuB. The LTF independent adsorption was also demonstrated on an O22-like host mutant missing O-antigen O-acetylation, thus showing the biological value of this O-antigen modification for cell protection against phages.
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spelling pubmed-47285852016-02-08 Branched Lateral Tail Fiber Organization in T5-Like Bacteriophages DT57C and DT571/2 is Revealed by Genetic and Functional Analysis Golomidova, Alla K. Kulikov, Eugene E. Prokhorov, Nikolai S. Guerrero-Ferreira, Ricardo С. Knirel, Yuriy A. Kostryukova, Elena S. Tarasyan, Karina K. Letarov, Andrey V. Viruses Article The T5-like siphoviruses DT57C and DT571/2, isolated from horse feces, are very closely related to each other, and most of their structural proteins are also nearly identical to T5 phage. Their LTFs (L-shaped tail fibers), however, are composed of two proteins, LtfA and LtfB, instead of the single Ltf of bacteriophage T5. In silico and mutant analysis suggests a possible branched structure of DT57C and DT571/2 LTFs, where the LtfB protein is connected to the phage tail via the LtfA protein and with both proteins carrying receptor recognition domains. Such adhesin arrangement has not been previously recognized in siphoviruses. The LtfA proteins of our phages are found to recognize different host O-antigen types: E. coli O22-like for DT57C phage and E. coli O87 for DT571/2. LtfB proteins are identical in both phages and recognize another host receptor, most probably lipopolysaccharide (LPS) of E. coli O81 type. In these two bacteriophages, LTF function is essential to penetrate the shield of the host’s O-antigens. We also demonstrate that LTF-mediated adsorption becomes superfluous when the non-specific cell protection by O-antigen is missing, allowing the phages to bind directly to their common secondary receptor, the outer membrane protein BtuB. The LTF independent adsorption was also demonstrated on an O22-like host mutant missing O-antigen O-acetylation, thus showing the biological value of this O-antigen modification for cell protection against phages. MDPI 2016-01-21 /pmc/articles/PMC4728585/ /pubmed/26805872 http://dx.doi.org/10.3390/v8010026 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Golomidova, Alla K.
Kulikov, Eugene E.
Prokhorov, Nikolai S.
Guerrero-Ferreira, Ricardo С.
Knirel, Yuriy A.
Kostryukova, Elena S.
Tarasyan, Karina K.
Letarov, Andrey V.
Branched Lateral Tail Fiber Organization in T5-Like Bacteriophages DT57C and DT571/2 is Revealed by Genetic and Functional Analysis
title Branched Lateral Tail Fiber Organization in T5-Like Bacteriophages DT57C and DT571/2 is Revealed by Genetic and Functional Analysis
title_full Branched Lateral Tail Fiber Organization in T5-Like Bacteriophages DT57C and DT571/2 is Revealed by Genetic and Functional Analysis
title_fullStr Branched Lateral Tail Fiber Organization in T5-Like Bacteriophages DT57C and DT571/2 is Revealed by Genetic and Functional Analysis
title_full_unstemmed Branched Lateral Tail Fiber Organization in T5-Like Bacteriophages DT57C and DT571/2 is Revealed by Genetic and Functional Analysis
title_short Branched Lateral Tail Fiber Organization in T5-Like Bacteriophages DT57C and DT571/2 is Revealed by Genetic and Functional Analysis
title_sort branched lateral tail fiber organization in t5-like bacteriophages dt57c and dt571/2 is revealed by genetic and functional analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4728585/
https://www.ncbi.nlm.nih.gov/pubmed/26805872
http://dx.doi.org/10.3390/v8010026
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