» Articles » PMID: 4309750

Temperature and the Regulation of Enzyme Activity in Poikilotherms. Properties of Lungfish Fructose Diphosphatase

Overview
Journal Biochem J
Specialty Biochemistry
Date 1969 May 1
PMID 4309750
Citations 4
Authors
Affiliations
Soon will be listed here.
Abstract

1. The properties of fructose diphosphatase from liver of South American lungfish (Lepidosiren paradoxa) were examined. 2. Saturation curves for substrate (fructose diphosphate) and both cofactors (Mn(2+) and Mg(2+)) are sigmoidal and Hill plots of these results suggest about 2 interacting substrate and cofactor sites/molecule of enzyme. 3. Mn(2+) is an efficient positive modulator of the enzyme and K(a) for Mn(2+) is about 20-30-fold lower than the K(a) for Mg(2+). 4. Lungfish fructose diphosphatase is inhibited by low concentrations of AMP, and the affinity of the enzyme for AMP is insensitive to temperature. 5. The affinities of fructose diphosphatase for fructose diphosphate and Mn(2+) appear to be dependent on temperature, whereas affinity for Mg(2+) is temperature-independent. 6. The pH optimum of the enzyme depends on the presence of the particular cofactor. As pH increases, the K(a) values of both cations are lowered, maximum velocities are increased and the saturation curves for cofactor become hyperbolic. 7. The possible roles of these ions, pH and substrate in the modulation of fructose diphosphatase and gluconeogenic activity in the lungfish are discussed in relation to aestivation and temperature adaptation.

Citing Articles

Choline kinase in Cuscuta reflexa.

Setty P, KRISHNAN P Biochem J. 1972; 126(2):313-24.

PMID: 5010855 PMC: 1178381. DOI: 10.1042/bj1260313.


Temperature and enzyme activity in poikilotherms. Isocitrate dehydrogenases in rainbow-trout liver.

Moon T, Hochlachka P Biochem J. 1971; 123(5):695-705.

PMID: 4399398 PMC: 1177070. DOI: 10.1042/bj1230695.


Temperature and the regulation of enzyme activity in poikilotherms. Regulatory properties of fructose diphosphatase from muscle of the Alaskan king-crab.

Behrisch H Biochem J. 1971; 121(3):399-409.

PMID: 4330377 PMC: 1176586. DOI: 10.1042/bj1210399.


Temperature and the regulation of enzyme activity in poikilotherms. Fructose diphosphatase from migrating salmon.

Behrisch H Biochem J. 1969; 115(4):687-96.

PMID: 4311440 PMC: 1185194. DOI: 10.1042/bj1150687.

References
1.
Janssens P . Phosphorylase and glucose-6-phosphatase in the African lungfish. Comp Biochem Physiol. 1965; 16(3):317-9. DOI: 10.1016/0010-406x(65)90329-4. View

2.
MASSEY V, Curti B, Ganther H . A temperature-dependent conformational change in D-amino acid oxidase and its effect on catalysis. J Biol Chem. 1966; 241(10):2347-57. View

3.
Trivedi B, Danforth W . Effect of pH on the kinetics of frog muscle phosphofructokinase. J Biol Chem. 1966; 241(17):4110-2. View

4.
HORECKER B, Pontremoli S, Rosen O, Rosen R . Structure and function in fructose diphosphatase. Fed Proc. 1966; 25(5):1521-8. View

5.
Preiss J, Biggs M, Greenberg E . The effect of magnesium ion concentration on the pH optimum of the spinach leaf alkaline fructose diphosphatase. J Biol Chem. 1967; 242(9):2292-4. View