The effect of some nucleotides on UDP-glucose dehydrogenase (EC, 1.1.1.22) and UDP-glucose 4'-epimerase (EC, 5.1.3.2) extracted from epiphysial-plate cartilage of newborn pigs was investigated. UDP-xylose acts as a co-operative allosteric inhibitor of UDP-glucose dehydrogenase, whereas it does not inhibit UDP-glucose 4'-epimerase activity: the inhibition of UDP-glucose dehydrogenase results in an increase of UDP-galactose synthesis, in agreement with the equilibrium constant of UDP-glucose 4'-epimerase reaction. Because of the presence of UDP-glucose 4'-epimerase activity in the nezyme extract, the addition of UDP-galactose induces an increase in reaction rate of UDP-glucose dehydrogenease. NADH inhibits both UDP-glucose dehydrogenase and UDP-glucose 4'-epimerase activities; in the presence of non-saturating NAD concentrations, NADH acts as a co-operative allosteric inhibitor of both enzymes. The Inhibitory effect of NADH seems to be strickingly correlated with the value of NAD/NADH ratio and pH. In any case, the percentage inhibition of UDP-glucose 4'-epimerase, under the same experimental conditions, is always higher than that of UDP-glucose dehydrogenase.

Effect of some nucleotides on the regulation of glycosaminoglycan biosynthesis

SPEZIALE, PIETRO;RINDI, SIMONETTA;BALDUINI, CESARE;
1976-01-01

Abstract

The effect of some nucleotides on UDP-glucose dehydrogenase (EC, 1.1.1.22) and UDP-glucose 4'-epimerase (EC, 5.1.3.2) extracted from epiphysial-plate cartilage of newborn pigs was investigated. UDP-xylose acts as a co-operative allosteric inhibitor of UDP-glucose dehydrogenase, whereas it does not inhibit UDP-glucose 4'-epimerase activity: the inhibition of UDP-glucose dehydrogenase results in an increase of UDP-galactose synthesis, in agreement with the equilibrium constant of UDP-glucose 4'-epimerase reaction. Because of the presence of UDP-glucose 4'-epimerase activity in the nezyme extract, the addition of UDP-galactose induces an increase in reaction rate of UDP-glucose dehydrogenease. NADH inhibits both UDP-glucose dehydrogenase and UDP-glucose 4'-epimerase activities; in the presence of non-saturating NAD concentrations, NADH acts as a co-operative allosteric inhibitor of both enzymes. The Inhibitory effect of NADH seems to be strickingly correlated with the value of NAD/NADH ratio and pH. In any case, the percentage inhibition of UDP-glucose 4'-epimerase, under the same experimental conditions, is always higher than that of UDP-glucose dehydrogenase.
1976
Biochemistry & Biophysics focuses on the structure and chemistry of biomolecules and covers all aspects of basic biochemistry/biophysics, including molecular structure, enzyme kinetics and protein-protein interaction; this category also contains cross-disciplinary resources focused on a specific class of biological molecules, e.g., nucleic acids, steroids, magnesium, growth factors, free radicals, bio-membranes, and peptides. Excluded are resources dealing with the application of biochemical techniques to specific topics listed elsewhere in CC/LS. Resources with a strong emphasis on the integration of biochemical pathways (such as signal transduction or molecular motors) at the cellular level are placed in the Cell & Developmental Biology category.
Sì, ma tipo non specificato
Inglese
Internazionale
STAMPA
4
4
247
254
NUcleotide Glycosaminoglycan Biosynthesis
5
info:eu-repo/semantics/article
262
De Luca, G; Speziale, Pietro; Rindi, Simonetta; Balduini, Cesare; Castellani, A. A.
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/140578
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