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Critical role of the acceptor stem of tRNAsMet in their aminoacylation by Escherichia coli methionyl-tRNA synthetase

  • Thierry Meinnel
  • , Yves Mechulam
  • , Christine Lazennec
  • , Sylvain Blanquet
  • , Guy Fayat
  • Institut Polytechnique de Paris

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Résumé

To be aminoacylated by Escherichia coli methionyl-tRNA synthetase, a tRNA requires the presence of the methionine anticodon (CAU sequence). However, the importance in this reaction of the other nucleotides of tRNAsMet has still to be described. In this work, through the study of more than 35 variants of tRNAsMet, it is shown, firstly, that the parameters of the aminoacylation reaction remain independent of the mutations affecting either the sequences or the sizes of the D-loop, D-stem and variable loop. This conclusion is illustrated by the construction and study of a tRNAf(CAU)Met with the D-stem, D-loop and very long variable loop of a class II tRNA. The resulting chimaeric tRNA is methionylated as efficiently as tRNAf(CAU)Met or tRNAm(CAU)Met. Secondly, mutations affecting base 73 and base pairs 2.71 and 3.70 in the acceptor stem of tRNAf(CAU)Met as well as bases 32, 33 and 37, adjacent to the anticodon, cause a strong reduction of the rate of the aminoacylation reaction. Thirdly, it is shown that, provided it is given the acceptor stem of tRNAm(CAU)Met or tRNAf(CAU)Met, a tRNA having the anticodon loop of tRNAMet can be converted into a substrate for methionyl-tRNA synthetase as efficient as tRNAf(CAU)Met or tRNAm(CAU)Met. Finally, it is proposed that, beyond the binding of the anticodon loop to the synthetase, the sequence of the acceptor stem may strongly influence the rate of the catalytic step of the aminoacylation reaction by properly orientating the 3’-end of the tRNA towards the catalytic centre.

langue originaleAnglais
Pages (de - à)26-36
Nombre de pages11
journalJournal of Molecular Biology
Volume229
Numéro de publication1
Les DOIs
étatPublié - 5 janv. 1993

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