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Yet More Evidence of Collusion: a New Viral Defense System Encoded by Gordonia Phage CarolAnn

Temperate phages play important roles in the physiology of their bacterial hosts and establish a lysogenic relationship with the host through which prophage-expressed genes confer new phenotypes. A key phenotype is prophage-mediated defense against heterotypic viral attack, in which temperate phages...

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Autores principales: Montgomery, Matthew T., Guerrero Bustamante, Carlos A., Dedrick, Rebekah M., Jacobs-Sera, Deborah, Hatfull, Graham F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6426606/
https://www.ncbi.nlm.nih.gov/pubmed/30890601
http://dx.doi.org/10.1128/mBio.02417-18
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author Montgomery, Matthew T.
Guerrero Bustamante, Carlos A.
Dedrick, Rebekah M.
Jacobs-Sera, Deborah
Hatfull, Graham F.
author_facet Montgomery, Matthew T.
Guerrero Bustamante, Carlos A.
Dedrick, Rebekah M.
Jacobs-Sera, Deborah
Hatfull, Graham F.
author_sort Montgomery, Matthew T.
collection PubMed
description Temperate phages play important roles in the physiology of their bacterial hosts and establish a lysogenic relationship with the host through which prophage-expressed genes confer new phenotypes. A key phenotype is prophage-mediated defense against heterotypic viral attack, in which temperate phages collude with their bacterial host to prevent other phages from attacking, sometimes with exquisite specificity. Such defense systems have been described in Pseudomonas and Mycobacterium phages but are likely widespread throughout the microbial community. Here, we describe a novel prophage-mediated defense system encoded by Gordonia phage CarolAnn, which defends against infection by unrelated phages grouped in cluster CZ. CarolAnn genes 43 and 44 are coexpressed with the repressor and are necessary and sufficient to confer defense against phage Kita and its close relatives. Kita and these relatives are targeted through Kita gene 53, a gene that is of unknown function but which is the location of defense escape mutations that overcome CarolAnn defense. Expression of Kita gene 53 is toxic to Gordonia terrae in the presence of CarolAnn genes 43 and 44, suggesting that defense may be mediated by an abortive infection type of mechanism. CarolAnn genes 43 and 44 are distant relatives of mycobacteriophage Sbash genes 31 and 30, respectively, which also confer viral defense but use a different targeting system.
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spelling pubmed-64266062019-03-22 Yet More Evidence of Collusion: a New Viral Defense System Encoded by Gordonia Phage CarolAnn Montgomery, Matthew T. Guerrero Bustamante, Carlos A. Dedrick, Rebekah M. Jacobs-Sera, Deborah Hatfull, Graham F. mBio Research Article Temperate phages play important roles in the physiology of their bacterial hosts and establish a lysogenic relationship with the host through which prophage-expressed genes confer new phenotypes. A key phenotype is prophage-mediated defense against heterotypic viral attack, in which temperate phages collude with their bacterial host to prevent other phages from attacking, sometimes with exquisite specificity. Such defense systems have been described in Pseudomonas and Mycobacterium phages but are likely widespread throughout the microbial community. Here, we describe a novel prophage-mediated defense system encoded by Gordonia phage CarolAnn, which defends against infection by unrelated phages grouped in cluster CZ. CarolAnn genes 43 and 44 are coexpressed with the repressor and are necessary and sufficient to confer defense against phage Kita and its close relatives. Kita and these relatives are targeted through Kita gene 53, a gene that is of unknown function but which is the location of defense escape mutations that overcome CarolAnn defense. Expression of Kita gene 53 is toxic to Gordonia terrae in the presence of CarolAnn genes 43 and 44, suggesting that defense may be mediated by an abortive infection type of mechanism. CarolAnn genes 43 and 44 are distant relatives of mycobacteriophage Sbash genes 31 and 30, respectively, which also confer viral defense but use a different targeting system. American Society for Microbiology 2019-03-19 /pmc/articles/PMC6426606/ /pubmed/30890601 http://dx.doi.org/10.1128/mBio.02417-18 Text en Copyright © 2019 Montgomery et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Montgomery, Matthew T.
Guerrero Bustamante, Carlos A.
Dedrick, Rebekah M.
Jacobs-Sera, Deborah
Hatfull, Graham F.
Yet More Evidence of Collusion: a New Viral Defense System Encoded by Gordonia Phage CarolAnn
title Yet More Evidence of Collusion: a New Viral Defense System Encoded by Gordonia Phage CarolAnn
title_full Yet More Evidence of Collusion: a New Viral Defense System Encoded by Gordonia Phage CarolAnn
title_fullStr Yet More Evidence of Collusion: a New Viral Defense System Encoded by Gordonia Phage CarolAnn
title_full_unstemmed Yet More Evidence of Collusion: a New Viral Defense System Encoded by Gordonia Phage CarolAnn
title_short Yet More Evidence of Collusion: a New Viral Defense System Encoded by Gordonia Phage CarolAnn
title_sort yet more evidence of collusion: a new viral defense system encoded by gordonia phage carolann
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6426606/
https://www.ncbi.nlm.nih.gov/pubmed/30890601
http://dx.doi.org/10.1128/mBio.02417-18
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