Magnetic resonance studies on manganese-nucleotide complexes of phosphoglycerate kinase
- PMID: 321006
- DOI: 10.1021/bi00624a031
Magnetic resonance studies on manganese-nucleotide complexes of phosphoglycerate kinase
Abstract
Measurements of the relaxation rate of water protons (PRR) have been used to study the interaction of yeast phosphoglycerate kinase with the manganous complexes of a number of nucleotides. The results indicate that phosphoglycerate kinase belongs to the same class of enzymes as creatine kinase, adenylate kinase, formyltetrahydrofolate synthetase, and arginine kinase, with maximal binding of metal ion to tne enzyme in the presence of the nucleotide substrate. However, an analysis of titration curves for a number of nucleoside diphosphates (ADP, IDP, GDP) showed that there is a substantial synergism in binding of the metal ion and nucleotide to the enzyme in the ternary complex. The metal-substrate binds to the enzyme approximately two orders of magnitude more tightly than the free nucleotide; Other evidence for an atypical binding scheme for Mn(II)-nucleoside diphosphates was obtained by electron paramagnetic resonance (EPR) studies; the EPR spectrum for the bound Mn(II) in the enzyme-MnADP complex differed substantially from those obtained for other kinases. An identical EPR spectrum is observed with the MnADP complex with the rabbit muscle enzyme as with the yeast enzyme. In contrast, the dissociation constant for the enzyme-MnATP complex is approximately fourfold lower than that for enzyme-ATP, and there are no substantial changes in the electron paramagnetic resonance spectrum of MnATP2- when the complex is bound to phosphoglycerate kinase. A small but significant change in the PRR of water is observed on addition of 3-phosphoglycerate (but not 2-phosphoglycerate) to the MnADP-enzyme complex. However, addition of 3-phosphoglycerate to enzyme-MnADP did not influence the EPR spectrum of the enzyme-bound Mn(II).
Similar articles
-
Electron paramagnetic resonance and water proton relaxation rate studies of formyltetrahydrofolate synthetase-manganous ion complexes. Evidence for involvement of substrates in the promotion of a catalytically competent active site.J Biol Chem. 1975 Jan 10;250(1):261-70. J Biol Chem. 1975. PMID: 166989
-
Equilibrium and water proton relaxation rate enhancement properties of formyltetrahydrofolate synthetase-manganous ion-substrate complexes.J Biol Chem. 1975 Jan 10;250(1):254-60. J Biol Chem. 1975. PMID: 166988
-
Coordination scheme and stereochemical configuration of manganese(II) adenosine 5'-diphosphate at the active site of 3-phosphoglycerate kinase.Biochemistry. 1985 Sep 24;24(20):5328-33. doi: 10.1021/bi00341a009. Biochemistry. 1985. PMID: 3000431
-
Phosphoglycerate kinase.Philos Trans R Soc Lond B Biol Sci. 1981 Jun 26;293(1063):93-104. doi: 10.1098/rstb.1981.0063. Philos Trans R Soc Lond B Biol Sci. 1981. PMID: 6115427 Review.
-
The anatomy of a kinase and the control of phosphate transfer.Eur J Biochem. 1993 Aug 15;216(1):1-18. doi: 10.1111/j.1432-1033.1993.tb18110.x. Eur J Biochem. 1993. PMID: 8365395 Review. No abstract available.
Cited by
-
Mg2+ affects the binding of ADP but not ATP to 3-phosphoglycerate kinase. Correlation between equilibrium dialysis binding and enzyme kinetic data.Biochem J. 1993 Jul 15;293 ( Pt 2)(Pt 2):595-9. doi: 10.1042/bj2930595. Biochem J. 1993. PMID: 8343139 Free PMC article.
Publication types
MeSH terms
Substances
LinkOut - more resources
Molecular Biology Databases