Viral evasion of a bacterial suicide system by RNA-based molecular mimicry enables infectious altruism.

Abortive infection, during which an infected bacterial cell commits altruistic suicide to destroy the replicating bacteriophage and protect the clonal population, can be mediated by toxin-antitoxin systems such as the Type III protein-RNA toxin-antitoxin system, ToxIN. A flagellum-dependent bacterio...

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Main Authors: Tim R Blower, Terry J Evans, Rita Przybilski, Peter C Fineran, George P C Salmond
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC3475682?pdf=render
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author Tim R Blower
Terry J Evans
Rita Przybilski
Peter C Fineran
George P C Salmond
author_facet Tim R Blower
Terry J Evans
Rita Przybilski
Peter C Fineran
George P C Salmond
author_sort Tim R Blower
collection DOAJ
description Abortive infection, during which an infected bacterial cell commits altruistic suicide to destroy the replicating bacteriophage and protect the clonal population, can be mediated by toxin-antitoxin systems such as the Type III protein-RNA toxin-antitoxin system, ToxIN. A flagellum-dependent bacteriophage of the Myoviridae, ΦTE, evolved rare mutants that "escaped" ToxIN-mediated abortive infection within Pectobacterium atrosepticum. Wild-type ΦTE encoded a short sequence similar to the repetitive nucleotide sequence of the RNA antitoxin, ToxI, from ToxIN. The ΦTE escape mutants had expanded the number of these "pseudo-ToxI" genetic repeats and, in one case, an escape phage had "hijacked" ToxI from the plasmid-borne toxIN locus, through recombination. Expression of the pseudo-ToxI repeats during ΦTE infection allowed the phage to replicate, unaffected by ToxIN, through RNA-based molecular mimicry. This is the first example of a non-coding RNA encoded by a phage that evolves by selective expansion and recombination to enable viral suppression of a defensive bacterial suicide system. Furthermore, the ΦTE escape phages had evolved enhanced capacity to transduce replicons expressing ToxIN, demonstrating virus-mediated horizontal transfer of genetic altruism.
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spelling doaj.art-468f23a15a284ad09e36108e06a7bed62022-12-22T03:11:38ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042012-01-01810e100302310.1371/journal.pgen.1003023Viral evasion of a bacterial suicide system by RNA-based molecular mimicry enables infectious altruism.Tim R BlowerTerry J EvansRita PrzybilskiPeter C FineranGeorge P C SalmondAbortive infection, during which an infected bacterial cell commits altruistic suicide to destroy the replicating bacteriophage and protect the clonal population, can be mediated by toxin-antitoxin systems such as the Type III protein-RNA toxin-antitoxin system, ToxIN. A flagellum-dependent bacteriophage of the Myoviridae, ΦTE, evolved rare mutants that "escaped" ToxIN-mediated abortive infection within Pectobacterium atrosepticum. Wild-type ΦTE encoded a short sequence similar to the repetitive nucleotide sequence of the RNA antitoxin, ToxI, from ToxIN. The ΦTE escape mutants had expanded the number of these "pseudo-ToxI" genetic repeats and, in one case, an escape phage had "hijacked" ToxI from the plasmid-borne toxIN locus, through recombination. Expression of the pseudo-ToxI repeats during ΦTE infection allowed the phage to replicate, unaffected by ToxIN, through RNA-based molecular mimicry. This is the first example of a non-coding RNA encoded by a phage that evolves by selective expansion and recombination to enable viral suppression of a defensive bacterial suicide system. Furthermore, the ΦTE escape phages had evolved enhanced capacity to transduce replicons expressing ToxIN, demonstrating virus-mediated horizontal transfer of genetic altruism.http://europepmc.org/articles/PMC3475682?pdf=render
spellingShingle Tim R Blower
Terry J Evans
Rita Przybilski
Peter C Fineran
George P C Salmond
Viral evasion of a bacterial suicide system by RNA-based molecular mimicry enables infectious altruism.
PLoS Genetics
title Viral evasion of a bacterial suicide system by RNA-based molecular mimicry enables infectious altruism.
title_full Viral evasion of a bacterial suicide system by RNA-based molecular mimicry enables infectious altruism.
title_fullStr Viral evasion of a bacterial suicide system by RNA-based molecular mimicry enables infectious altruism.
title_full_unstemmed Viral evasion of a bacterial suicide system by RNA-based molecular mimicry enables infectious altruism.
title_short Viral evasion of a bacterial suicide system by RNA-based molecular mimicry enables infectious altruism.
title_sort viral evasion of a bacterial suicide system by rna based molecular mimicry enables infectious altruism
url http://europepmc.org/articles/PMC3475682?pdf=render
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