Specific function of a G.U wobble pair from an adjacent helical site in tRNA(Ala) during recognition by alanyl-tRNA synthetase.
- 1 February 1996
- journal article
- Vol. 2 (2) , 105-9
Abstract
G.U wobble pairs are crucial to many examples of RNA-protein recognition. We previously concluded that the G.U wobble pair in the acceptor helix of Escherichia coli alanine tRNA (tRNA(Ala)) is recognized indirectly by alanyl-tRNA synthetase (AlaRS), although direct recognition may play some role. Our conclusion was based on the finding that amber suppressor tRNA Ala with G.U shifted to an adjacent helical site retained substantial but incomplete Ala acceptor function in vivo. Other researchers concluded that only direct recognition is operative. We report here a repeat of our original experiment using tRNA(Lys) instead of tRNA(Ala). We find, as in the original experiment, that a shifted G.U confers Ala acceptor activity. Moreover, the modified tRNA(Lys) was specific for Ala, corroborating our original conclusion and making it more compelling.This publication has 25 references indexed in Scilit:
- Structure of the P1 Helix from Group I Self-splicing IntronsJournal of Molecular Biology, 1995
- Nucleotides that contribute to the identity of Escherichia coli tRNAPheJournal of Molecular Biology, 1988
- A simple structural feature is a major determinant of the identity of a transfer RNANature, 1988
- Changing the Identity of a tRNA by Introducing a G-U Wobble Pair Near the 3′ Acceptor EndScience, 1988
- Comparison of tRNA sequencesBioinformatics, 1987
- Expression of synthetic suppressor tRNA genes under the control of a synthetic promoterGene, 1986
- Effects of surrounding sequence on the suppression of nonsense codonsJournal of Molecular Biology, 1983
- Initial Stages of the Thermal Unfolding of Yeast Phenylalanine Transfer RNA as Studied by Chemical Modification: The Effect of MagnesiumEuropean Journal of Biochemistry, 1977
- Structural Domains of Transfer RNA MoleculesScience, 1976
- Intrinsic Precision of Aminoacyl-tRNA Synthesis Enhanced through Parallel Systems of LigandsNature New Biology, 1972