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Idiosyncratic features in tRNAs participating in bacterial cell wall synthesis

The FemX(Wv) aminoacyl transferase of Weissella viridescens initiates the synthesis of the side chain of peptidoglycan precursors by transferring l-Ala from Ala-tRNA(Ala) to UDP-MurNAc-pentadepsipeptide. FemX(Wv) is an attractive target for the development of novel antibiotics, since the side chain...

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Autores principales: Villet, Régis, Fonvielle, Matthieu, Busca, Patricia, Chemama, Maryline, Maillard, Antoine P., Hugonnet, Jean-Emmanuel, Dubost, Lionel, Marie, Arul, Josseaume, Nathalie, Mesnage, Stéphane, Mayer, Claudine, Valéry, Jean-Marc, Ethève-Quelquejeu, Mélanie, Arthur, Michel
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2175331/
https://www.ncbi.nlm.nih.gov/pubmed/17932062
http://dx.doi.org/10.1093/nar/gkm778
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author Villet, Régis
Fonvielle, Matthieu
Busca, Patricia
Chemama, Maryline
Maillard, Antoine P.
Hugonnet, Jean-Emmanuel
Dubost, Lionel
Marie, Arul
Josseaume, Nathalie
Mesnage, Stéphane
Mayer, Claudine
Valéry, Jean-Marc
Ethève-Quelquejeu, Mélanie
Arthur, Michel
author_facet Villet, Régis
Fonvielle, Matthieu
Busca, Patricia
Chemama, Maryline
Maillard, Antoine P.
Hugonnet, Jean-Emmanuel
Dubost, Lionel
Marie, Arul
Josseaume, Nathalie
Mesnage, Stéphane
Mayer, Claudine
Valéry, Jean-Marc
Ethève-Quelquejeu, Mélanie
Arthur, Michel
author_sort Villet, Régis
collection PubMed
description The FemX(Wv) aminoacyl transferase of Weissella viridescens initiates the synthesis of the side chain of peptidoglycan precursors by transferring l-Ala from Ala-tRNA(Ala) to UDP-MurNAc-pentadepsipeptide. FemX(Wv) is an attractive target for the development of novel antibiotics, since the side chain is essential for the last cross-linking step of peptidoglycan synthesis. Here, we show that FemX(Wv) is highly specific for incorporation of l-Ala in vivo based on extensive analysis of the structure of peptidoglycan. Comparison of various natural and in vitro-transcribed tRNAs indicated that the specificity of FemX(Wv) depends mainly upon the sequence of the tRNA although additional specificity determinants may include post-transcriptional modifications and recognition of the esterified amino acid. Site-directed mutagenesis identified cytosines in the G(1)–C(72) and G(2)–C(71) base pairs of the acceptor stem as critical for FemX(Wv) activity in agreement with modeling of tRNA(Ala) in the catalytic cavity of the enzyme. In contrast, semi-synthesis of Ala-tRNA(Ala) harboring nucleotide substitutions in the G(3)–U(70) wobble base pair showed that this main identity determinant of alanyl-tRNA synthetase is non-essential for FemX(Wv). The different modes of recognition of the acceptor stem indicate that specific inhibition of FemX(Wv) could be achieved by targeting the distal portion of tRNA(Ala) for the design of substrate analogues.
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spelling pubmed-21753312008-01-07 Idiosyncratic features in tRNAs participating in bacterial cell wall synthesis Villet, Régis Fonvielle, Matthieu Busca, Patricia Chemama, Maryline Maillard, Antoine P. Hugonnet, Jean-Emmanuel Dubost, Lionel Marie, Arul Josseaume, Nathalie Mesnage, Stéphane Mayer, Claudine Valéry, Jean-Marc Ethève-Quelquejeu, Mélanie Arthur, Michel Nucleic Acids Res Nucleic Acid Enzymes The FemX(Wv) aminoacyl transferase of Weissella viridescens initiates the synthesis of the side chain of peptidoglycan precursors by transferring l-Ala from Ala-tRNA(Ala) to UDP-MurNAc-pentadepsipeptide. FemX(Wv) is an attractive target for the development of novel antibiotics, since the side chain is essential for the last cross-linking step of peptidoglycan synthesis. Here, we show that FemX(Wv) is highly specific for incorporation of l-Ala in vivo based on extensive analysis of the structure of peptidoglycan. Comparison of various natural and in vitro-transcribed tRNAs indicated that the specificity of FemX(Wv) depends mainly upon the sequence of the tRNA although additional specificity determinants may include post-transcriptional modifications and recognition of the esterified amino acid. Site-directed mutagenesis identified cytosines in the G(1)–C(72) and G(2)–C(71) base pairs of the acceptor stem as critical for FemX(Wv) activity in agreement with modeling of tRNA(Ala) in the catalytic cavity of the enzyme. In contrast, semi-synthesis of Ala-tRNA(Ala) harboring nucleotide substitutions in the G(3)–U(70) wobble base pair showed that this main identity determinant of alanyl-tRNA synthetase is non-essential for FemX(Wv). The different modes of recognition of the acceptor stem indicate that specific inhibition of FemX(Wv) could be achieved by targeting the distal portion of tRNA(Ala) for the design of substrate analogues. Oxford University Press 2007-11 2007-10-11 /pmc/articles/PMC2175331/ /pubmed/17932062 http://dx.doi.org/10.1093/nar/gkm778 Text en © 2007 The Author(s) http://creativecommons.org/licenses/by-nc/2.0/uk/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.0/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Nucleic Acid Enzymes
Villet, Régis
Fonvielle, Matthieu
Busca, Patricia
Chemama, Maryline
Maillard, Antoine P.
Hugonnet, Jean-Emmanuel
Dubost, Lionel
Marie, Arul
Josseaume, Nathalie
Mesnage, Stéphane
Mayer, Claudine
Valéry, Jean-Marc
Ethève-Quelquejeu, Mélanie
Arthur, Michel
Idiosyncratic features in tRNAs participating in bacterial cell wall synthesis
title Idiosyncratic features in tRNAs participating in bacterial cell wall synthesis
title_full Idiosyncratic features in tRNAs participating in bacterial cell wall synthesis
title_fullStr Idiosyncratic features in tRNAs participating in bacterial cell wall synthesis
title_full_unstemmed Idiosyncratic features in tRNAs participating in bacterial cell wall synthesis
title_short Idiosyncratic features in tRNAs participating in bacterial cell wall synthesis
title_sort idiosyncratic features in trnas participating in bacterial cell wall synthesis
topic Nucleic Acid Enzymes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2175331/
https://www.ncbi.nlm.nih.gov/pubmed/17932062
http://dx.doi.org/10.1093/nar/gkm778
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