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Novel Escherichia coli RF1 mutants with decreased translation termination activity and increased sensitivity to the cytotoxic effect of the bacterial toxins Kid and RelE

Novel mutations in prfA, the gene for the polypeptide release factor RF1 of Escherichia coli, were isolated using a positive genetic screen based on the parD (kis, kid) toxin–antitoxin system. This original approach allowed the direct selection of mutants with altered translational termination effic...

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Autores principales: Diago-Navarro, Elizabeth, Mora, Liliana, Buckingham, Richard H, Díaz-Orejas, Ramón, Lemonnier, Marc
Formato: Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2680264/
https://www.ncbi.nlm.nih.gov/pubmed/19019162
http://dx.doi.org/10.1111/j.1365-2958.2008.06510.x
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author Diago-Navarro, Elizabeth
Mora, Liliana
Buckingham, Richard H
Díaz-Orejas, Ramón
Lemonnier, Marc
author_facet Diago-Navarro, Elizabeth
Mora, Liliana
Buckingham, Richard H
Díaz-Orejas, Ramón
Lemonnier, Marc
author_sort Diago-Navarro, Elizabeth
collection PubMed
description Novel mutations in prfA, the gene for the polypeptide release factor RF1 of Escherichia coli, were isolated using a positive genetic screen based on the parD (kis, kid) toxin–antitoxin system. This original approach allowed the direct selection of mutants with altered translational termination efficiency at UAG codons. The isolated prfA mutants displayed a ∼10-fold decrease in UAG termination efficiency with no significant changes in RF1 stability in vivo. All three mutations, G121S, G301S and R303H, were situated close to the nonsense codon recognition site in RF1:ribosome complexes. The prfA mutants displayed increased sensitivity to the RelE toxin encoded by the relBE system of E. coli, thus providing in vivo support for the functional interaction between RF1 and RelE. The prfA mutants also showed increased sensitivity to the Kid toxin. Since this toxin can cleave RNA in a ribosome-independent manner, this result was not anticipated and provided first evidence for the involvement of RF1 in the pathway of Kid toxicity. The sensitivity of the prfA mutants to RelE and Kid was restored to normal levels upon overproduction of the wild-type RF1 protein. We discuss these results and their utility for the design of novel antibacterial strategies in the light of the recently reported structure of ribosome-bound RF1.
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spelling pubmed-26802642009-05-15 Novel Escherichia coli RF1 mutants with decreased translation termination activity and increased sensitivity to the cytotoxic effect of the bacterial toxins Kid and RelE Diago-Navarro, Elizabeth Mora, Liliana Buckingham, Richard H Díaz-Orejas, Ramón Lemonnier, Marc Mol Microbiol Research Articles Novel mutations in prfA, the gene for the polypeptide release factor RF1 of Escherichia coli, were isolated using a positive genetic screen based on the parD (kis, kid) toxin–antitoxin system. This original approach allowed the direct selection of mutants with altered translational termination efficiency at UAG codons. The isolated prfA mutants displayed a ∼10-fold decrease in UAG termination efficiency with no significant changes in RF1 stability in vivo. All three mutations, G121S, G301S and R303H, were situated close to the nonsense codon recognition site in RF1:ribosome complexes. The prfA mutants displayed increased sensitivity to the RelE toxin encoded by the relBE system of E. coli, thus providing in vivo support for the functional interaction between RF1 and RelE. The prfA mutants also showed increased sensitivity to the Kid toxin. Since this toxin can cleave RNA in a ribosome-independent manner, this result was not anticipated and provided first evidence for the involvement of RF1 in the pathway of Kid toxicity. The sensitivity of the prfA mutants to RelE and Kid was restored to normal levels upon overproduction of the wild-type RF1 protein. We discuss these results and their utility for the design of novel antibacterial strategies in the light of the recently reported structure of ribosome-bound RF1. Blackwell Publishing Ltd 2008-01 2008-10-31 /pmc/articles/PMC2680264/ /pubmed/19019162 http://dx.doi.org/10.1111/j.1365-2958.2008.06510.x Text en Journal compilation © 2008 Blackwell Publishing
spellingShingle Research Articles
Diago-Navarro, Elizabeth
Mora, Liliana
Buckingham, Richard H
Díaz-Orejas, Ramón
Lemonnier, Marc
Novel Escherichia coli RF1 mutants with decreased translation termination activity and increased sensitivity to the cytotoxic effect of the bacterial toxins Kid and RelE
title Novel Escherichia coli RF1 mutants with decreased translation termination activity and increased sensitivity to the cytotoxic effect of the bacterial toxins Kid and RelE
title_full Novel Escherichia coli RF1 mutants with decreased translation termination activity and increased sensitivity to the cytotoxic effect of the bacterial toxins Kid and RelE
title_fullStr Novel Escherichia coli RF1 mutants with decreased translation termination activity and increased sensitivity to the cytotoxic effect of the bacterial toxins Kid and RelE
title_full_unstemmed Novel Escherichia coli RF1 mutants with decreased translation termination activity and increased sensitivity to the cytotoxic effect of the bacterial toxins Kid and RelE
title_short Novel Escherichia coli RF1 mutants with decreased translation termination activity and increased sensitivity to the cytotoxic effect of the bacterial toxins Kid and RelE
title_sort novel escherichia coli rf1 mutants with decreased translation termination activity and increased sensitivity to the cytotoxic effect of the bacterial toxins kid and rele
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2680264/
https://www.ncbi.nlm.nih.gov/pubmed/19019162
http://dx.doi.org/10.1111/j.1365-2958.2008.06510.x
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