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PMID: 1100384 Published · ppublish English Journal Article

Equivalent and non-equivalent binding sites for tRNA on aminoacyl-tRNA synthetases.

European journal of biochemistry ·Vol. 55 ·No. 3 ·1975-07-15 ·Pages 517-29

Krauss G, Pingoud A, Boehme D, Riesner D, Peters F, Maas G

Abstract

Complexes between tRNAPhe (yeast), tRNASer (yeast) and tRNATyr (Escherichia coli) and their cognate aminoacyl-tRNA synthetases have been studied by sedimentation velocity runs in an analytical ultracentrifuge. The amount of complex formation was determined by the absorption and the sedimentation coefficients of the fast-moving boundary in the presence of excess tRNA or excess synthetase respectively. The same method has been applied to unspecific combinations of tRNAs and synthetases. Inactive material of tRNA or synthetase does not influence the results. 1. Two moles of tRNAPhe can be bound to one mole of phenylalanyl-tRNA synthetase with a binding constant greater than 10(6) M-1. The binding constants for both tRNAs are very similar; the binding sites are independent of each other. Omission of Mg2+ does not prevent binding. 2. Two moles of tRNASer can be bound to one mole of Seryl-tRNA synthetase; the binding of the first and second tRNA is non-equivalent, K1 greater than 10(6) M-1, K2 is determined to be 1.3 X 10(5) M-1 at pH 7.2. Omission of Mg2+ prevents complex formation. 3. Tyrosyl-tRNA synthetase behaves very similarly to seryl-tRNA synthetase. The binding constant for the weakly bound tRNA is 2.3 X 10(5) M-1 at pH 7.2, and 2.5 X 10(6) M-1 at pH 6.0. No complexes are observed in the absence of Mg2+. 4. Unspecific binding was only obtained with phenylalanyl-tRNA synthetase. It binds tRNASer (yeast), tRNAAla (yeast) and tRNATyr (E. coli) with a binding constant about 100 times lower compared to its cognate tRNA. The binding data are discussed with respect to the tertiary structure of the tRNAs, the subunit structure of the synthetases and the possible physical basis for the non-equivalence of binding sites.

MeSH Terms
Amino Acyl-tRNA Synthetases/metabolism Escherichia coli/enzymology Kinetics Macromolecular Substances Magnesium/pharmacology Mathematics Molecular Weight Phenylalanine Phenylalanine-tRNA Ligase/metabolism Protein Binding RNA, Transfer/metabolism Saccharomyces cerevisiae/enzymology Serine Serine-tRNA Ligase/metabolism Spectrophotometry, Ultraviolet Tyrosine Tyrosine-tRNA Ligase/metabolism
Chemicals
Macromolecular Substances Tyrosine Serine Phenylalanine RNA, Transfer Amino Acyl-tRNA Synthetases Tyrosine-tRNA Ligase Serine-tRNA Ligase Phenylalanine-tRNA Ligase Magnesium
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Krauss G
Pingoud A
Boehme D
Riesner D
Peters F
Maas G
Article Info
Journal
European journal of biochemistry
Abbr.
Eur J Biochem
ISSN
0014-2956
Published
1975-07-15
Pages
517-29
Language
English
Region
England
NLM ID
0107600
Subset
IM
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