Competition of aminoacyl-tRNA synthetases for tRNA ensures the accuracy of aminoacylation
- 1 January 1992
- journal article
- correction
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 20 (11) , 2847-2852
- https://doi.org/10.1093/nar/20.11.2847
Abstract
The accuracy of protein biosynthesis rests on the high fidelity with which aminoacyl-tRNA synthetases discriminate between tRNAs. Correct aminoacylation depends not only on identity elements (nucleotides in certain positions) in tRNA (1), but also on competition between different synthetases for a given tRNA (2). Here we describe in vivo and in vitro experiments which demonstrate how variations in the levels of synthetases and tRNA affect the accuracy of aminoacylation. We show in vivo that concurrent overexpression of Escherichia coli tyrosyl-tRNA synthetase abolishes misacylation of supF tRNA(Tyr) with glutamine in vivo by overproduced glutaminyl-tRNA synthetase. In an in vitro competition assay, we have confirmed that the overproduction mischarging phenomenon observed in vivo is due to competition between the synthetases at the level of aminoacylation. Likewise, we have been able to examine the role competition plays in the identity of a non-suppressor tRNA of ambiguous identity, tRNA(Glu). Finally, with this assay, we show that the identity of a tRNA and the accuracy with which it is recognized depend on the relative affinities of the synthetases for the tRNA. The in vitro competition assay represents a general method of obtaining qualitative information on tRNA identity in a competitive environment (usually only found in vivo) during a defined step in protein biosynthesis, aminoacylation. In addition, we show that the discriminator base (position 73) and the first base of the anticodon are important for recognition by E. coli tyrosyl-tRNA synthetase.Keywords
This publication has 38 references indexed in Scilit:
- Structural and sequence elements important for recognition of Escherichia coli formylmethionine tRNA by methionyl-tRNA transformylase are clustered in the acceptor stem.Journal of Biological Chemistry, 1991
- Structural basis of anticodon loop recognition by glutaminyl-tRNA synthetaseNature, 1991
- Nucleotides that determine Escherichia coli tRNA(Arg) and tRNA(Lys) acceptor identities revealed by analyses of mutant opal and amber suppressor tRNAs.Proceedings of the National Academy of Sciences, 1990
- Initiation of in vivo protein synthesis with non-methionine amino acidsBiochemistry, 1990
- tRNA IDENTITYAnnual Review of Biochemistry, 1989
- Discrimination between glutaminyl-tRNA synthetase and seryl-tRNA synthetase involves nucleotides in the acceptor helix of tRNA.Proceedings of the National Academy of Sciences, 1988
- Changing the Identity of a tRNA by Introducing a G-U Wobble Pair Near the 3′ Acceptor EndScience, 1988
- Biochemical and physical characterization of an unmodified yeast phenylalanine transfer RNA transcribed in vitro.Proceedings of the National Academy of Sciences, 1988
- Two control systems modulate the level of glutaminyl-tRNA synthetase in Escherichia coli.1985
- Is There a Discriminator Site in Transfer RNA?Proceedings of the National Academy of Sciences, 1972