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PMID: 3150543 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Site-directed mutagenesis to fine-tune enzyme specificity.

Protein engineering ·Vol. 2 ·No. 4 ·1988-10-00 ·Pages 293-6

Uemura H, Rogers MJ, Swanson R, Watson L, Söll D

Abstract

We have used a combination of a genetic selection and oligonucleotide-directed mutagenesis to introduce a series of amino acid replacements for a single residue into Escherichia coli glutaminyl-tRNA synthetase. The mutant enzymes mischarge supF tRNA(Tyr), with glutamine, to varying degrees depending on the polarity of the side chain introduced but apparently not depending on the size or shape of the side chain. These results indicate that repulsive charge-charge interactions may be important for specific recognition of nucleic acids by proteins and illustrate how a mutant, derived from genetic selection, may be further modified in activity by oligonucleotide-directed mutagenesis.

MeSH Terms
Amino Acid Sequence Amino Acyl-tRNA Synthetases/genetics Bacteriophages/genetics Base Sequence DNA, Recombinant/biosynthesis Escherichia coli/enzymology,genetics Genetic Engineering/methods Glutamate-tRNA Ligase/biosynthesis,genetics Recombinant Proteins/biosynthesis Restriction Mapping Selection, Genetic Substrate Specificity Suppression, Genetic beta-Galactosidase/genetics,metabolism
Chemicals
DNA, Recombinant Recombinant Proteins beta-Galactosidase Amino Acyl-tRNA Synthetases Glutamate-tRNA Ligase
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Uemura H
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06511.
Rogers M J
Swanson R
Watson L
Söll D
Article Info
Journal
Protein engineering
Abbr.
Protein Eng
ISSN
0269-2139
Published
1988-10-00
Pages
293-6
Language
English
Region
England
NLM ID
8801484
Subset
IM
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