Properties and substrate specificities of the phenylalanyl-transfer-ribonucleic acid synthetases of Aesculus species
- 1 October 1970
- journal article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 119 (4) , 677-690
- https://doi.org/10.1042/bj1190677
Abstract
1. Phenylalanyl-tRNA synthetases have been partially purified from cotyledons of seeds of Aesculus californica, which contains 2-amino-4-methylhex-4-enoic acid, and from four other species of Aesculus that do not contain this amino acid. The A. californica preparation was free from other aminoacyl-tRNA synthetases, and the contaminating synthetase activity in preparations from A. hippocastanum was decreased to acceptable limits by conducting assays of pyrophosphate exchange activity in 0.5m-potassium chloride. 2. The phenylalanyl-tRNA synthetase from each species activated 2-amino-4-methylhex-4-enoic acid with Km 30–40 times that for phenylalanine. The maximum velocity for 2-amino-4-methylhex-4-enoic acid was only 30% of that for phenylalanine with the A. californica enzyme, but the maximum velocities for the two substrates were identical for the other four species. 3. 2-Amino-4-methylhex-4-enoic acid was not found in the protein of A. californica, so discrimination against this amino acid probably occurs in the step of transfer to tRNA, though subcellular localization, or subsequent steps of protein synthesis could be involved. 4. Crotylglycine, methallylglycine, ethallylglycine, 2-aminohex-4,5-dienoic acid, 2-amino-5-methylhex-4-enoic acid, 2-amino-4-methylhex-4-enoic acid, β-(thien-2-yl)alanine, β-(pyrazol-1-yl)alanine, phenylserine and m-fluorophenylalanine were substrates for pyrophosphate exchange catalysed by the phenylalanyl-tRNA synthetases of A. californica or A. hippocastanum. Allylglycine, phenylglycine and 2-amino-4-phenylbutyric acid were inactive.Keywords
This publication has 7 references indexed in Scilit:
- AMINO ACID SELECTION IN PROTEIN BIOSYNTHESISBiological Reviews, 1967
- Amino acid-activating enzymes in yellow lupin seeds, and purification of leucyl-sRNA synthetase.1967
- The extraction and assay of aminoacyl-transfer-ribonucleic acid synthetases of tobacco leafBiochemical Journal, 1966
- Purification, properties and comparative specificities of the enzyme prolyl-transfer ribonucleic acid synthetase from Phaseolus aureus and Polygonatum multiflorumBiochemical Journal, 1965
- The biuret reaction: Changes in the ultraviolet absorption spectra and its application to the determination of peptide bondsAnalytical Biochemistry, 1962
- The isolation of a tryptophan-activating enzyme from pancreasArchives of Biochemistry and Biophysics, 1956
- PROTEIN MEASUREMENT WITH THE FOLIN PHENOL REAGENTJournal of Biological Chemistry, 1951