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Aminoacyl-tRNA-Charged Eukaryotic Elongation Factor 1A Is the Bona Fide Substrate for Legionella pneumophila Effector Glucosyltransferases

Legionella pneumophila, which is the causative organism of Legionnaireś disease, translocates numerous effector proteins into the host cell cytosol by a type IV secretion system during infection. Among the most potent effector proteins of Legionella are glucosyltransferases (lgt's), which selec...

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Autores principales: Tzivelekidis, Tina, Jank, Thomas, Pohl, Corinna, Schlosser, Andreas, Rospert, Sabine, Knudsen, Charlotte R., Rodnina, Marina V., Belyi, Yury, Aktories, Klaus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3245282/
https://www.ncbi.nlm.nih.gov/pubmed/22216304
http://dx.doi.org/10.1371/journal.pone.0029525
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author Tzivelekidis, Tina
Jank, Thomas
Pohl, Corinna
Schlosser, Andreas
Rospert, Sabine
Knudsen, Charlotte R.
Rodnina, Marina V.
Belyi, Yury
Aktories, Klaus
author_facet Tzivelekidis, Tina
Jank, Thomas
Pohl, Corinna
Schlosser, Andreas
Rospert, Sabine
Knudsen, Charlotte R.
Rodnina, Marina V.
Belyi, Yury
Aktories, Klaus
author_sort Tzivelekidis, Tina
collection PubMed
description Legionella pneumophila, which is the causative organism of Legionnaireś disease, translocates numerous effector proteins into the host cell cytosol by a type IV secretion system during infection. Among the most potent effector proteins of Legionella are glucosyltransferases (lgt's), which selectively modify eukaryotic elongation factor (eEF) 1A at Ser-53 in the GTP binding domain. Glucosylation results in inhibition of protein synthesis. Here we show that in vitro glucosylation of yeast and mouse eEF1A by Lgt3 in the presence of the factors Phe-tRNA(Phe) and GTP was enhanced 150 and 590-fold, respectively. The glucosylation of eEF1A catalyzed by Lgt1 and 2 was increased about 70-fold. By comparison of uncharged tRNA with two distinct aminoacyl-tRNAs (His-tRNA(His) and Phe-tRNA(Phe)) we could show that aminoacylation is crucial for Lgt-catalyzed glucosylation. Aminoacyl-tRNA had no effect on the enzymatic properties of lgt's and did not enhance the glucosylation rate of eEF1A truncation mutants, consisting of the GTPase domain only or of a 5 kDa peptide covering Ser-53 of eEF1A. Furthermore, binding of aminoacyl-tRNA to eEF1A was not altered by glucosylation. Taken together, our data suggest that the ternary complex, consisting of eEF1A, aminoacyl-tRNA and GTP, is the bona fide substrate for lgt's.
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spelling pubmed-32452822012-01-03 Aminoacyl-tRNA-Charged Eukaryotic Elongation Factor 1A Is the Bona Fide Substrate for Legionella pneumophila Effector Glucosyltransferases Tzivelekidis, Tina Jank, Thomas Pohl, Corinna Schlosser, Andreas Rospert, Sabine Knudsen, Charlotte R. Rodnina, Marina V. Belyi, Yury Aktories, Klaus PLoS One Research Article Legionella pneumophila, which is the causative organism of Legionnaireś disease, translocates numerous effector proteins into the host cell cytosol by a type IV secretion system during infection. Among the most potent effector proteins of Legionella are glucosyltransferases (lgt's), which selectively modify eukaryotic elongation factor (eEF) 1A at Ser-53 in the GTP binding domain. Glucosylation results in inhibition of protein synthesis. Here we show that in vitro glucosylation of yeast and mouse eEF1A by Lgt3 in the presence of the factors Phe-tRNA(Phe) and GTP was enhanced 150 and 590-fold, respectively. The glucosylation of eEF1A catalyzed by Lgt1 and 2 was increased about 70-fold. By comparison of uncharged tRNA with two distinct aminoacyl-tRNAs (His-tRNA(His) and Phe-tRNA(Phe)) we could show that aminoacylation is crucial for Lgt-catalyzed glucosylation. Aminoacyl-tRNA had no effect on the enzymatic properties of lgt's and did not enhance the glucosylation rate of eEF1A truncation mutants, consisting of the GTPase domain only or of a 5 kDa peptide covering Ser-53 of eEF1A. Furthermore, binding of aminoacyl-tRNA to eEF1A was not altered by glucosylation. Taken together, our data suggest that the ternary complex, consisting of eEF1A, aminoacyl-tRNA and GTP, is the bona fide substrate for lgt's. Public Library of Science 2011-12-22 /pmc/articles/PMC3245282/ /pubmed/22216304 http://dx.doi.org/10.1371/journal.pone.0029525 Text en Tzivelekidis et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Tzivelekidis, Tina
Jank, Thomas
Pohl, Corinna
Schlosser, Andreas
Rospert, Sabine
Knudsen, Charlotte R.
Rodnina, Marina V.
Belyi, Yury
Aktories, Klaus
Aminoacyl-tRNA-Charged Eukaryotic Elongation Factor 1A Is the Bona Fide Substrate for Legionella pneumophila Effector Glucosyltransferases
title Aminoacyl-tRNA-Charged Eukaryotic Elongation Factor 1A Is the Bona Fide Substrate for Legionella pneumophila Effector Glucosyltransferases
title_full Aminoacyl-tRNA-Charged Eukaryotic Elongation Factor 1A Is the Bona Fide Substrate for Legionella pneumophila Effector Glucosyltransferases
title_fullStr Aminoacyl-tRNA-Charged Eukaryotic Elongation Factor 1A Is the Bona Fide Substrate for Legionella pneumophila Effector Glucosyltransferases
title_full_unstemmed Aminoacyl-tRNA-Charged Eukaryotic Elongation Factor 1A Is the Bona Fide Substrate for Legionella pneumophila Effector Glucosyltransferases
title_short Aminoacyl-tRNA-Charged Eukaryotic Elongation Factor 1A Is the Bona Fide Substrate for Legionella pneumophila Effector Glucosyltransferases
title_sort aminoacyl-trna-charged eukaryotic elongation factor 1a is the bona fide substrate for legionella pneumophila effector glucosyltransferases
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3245282/
https://www.ncbi.nlm.nih.gov/pubmed/22216304
http://dx.doi.org/10.1371/journal.pone.0029525
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