Molecular Structure of the NADH/UDP-glucose Abortive Complex of UDP-galactose 4-Epimerase from Escherichia coli: Implications for the Catalytic Mechanism,
- 1 January 1996
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 35 (16) , 5137-5144
- https://doi.org/10.1021/bi9601114
Abstract
UDP-galactose 4-epimerase is one of three enzymes in the metabolic pathway that converts galactose into glucose1-phosphate. Specifically this enzyme catalyzes the interconversion of UDP-galactose and UDP-glucose. The molecular structure of the NADH/UDP-glucose abortive complex of the enzyme from Escherichia coli has been determined by X-ray diffraction analysis to a nominal resolution of 1.8 Å and refined to an R-factor of 18.2% for all measured X-ray data. The nicotinamide ring of the dinucleotide adopts the syn conformation in relationship to the ribose. Both the NADH and the UDP-glucose are in the proper orientation for a B-side specific hydride transfer from C4 of the sugar to C4 of the dinucleotide. Those residues implicated in glucose binding include Ser 124, Tyr 149, Asn 179, Asn 199, Arg 231, and Tyr 299. An amino acid sequence alignment of various prokaryotic and eukaryotic epimerases reveals a high degree of conservation with respect to those residues involved in both NADH and substrate binding. The nonstereospecificity displayed by epimerase was originally thought to occur through a simple rotation about the bond between the glycosyl C1 oxygen of the 4-ketose intermediate and the β-phosphorus of the UDP moiety, thereby allowing the opposite side of the sugar to face the NADH. The present structure reveals that additional rotations about the phosphate backbone of UDP are necessary. Furthermore, the abortive complex model described here suggests that Ser 124 and Tyr 149 are likely to play important roles in the catalytic mechanism of the enzyme.Keywords
This publication has 11 references indexed in Scilit:
- Molecular-Cloning, Characterization, and Mapping of a Full-Length cDNA Encoding Human UDP-Galactose 4′-EpimeraseBiochemical and Molecular Medicine, 1995
- Genetics of galactose metabolism of Erwinia amylovora and its influence on polysaccharide synthesis and virulence of the fire blight pathogenJournal of Bacteriology, 1994
- MOLSCRIPT: a program to produce both detailed and schematic plots of protein structuresJournal of Applied Crystallography, 1991
- cDNA from rat cells with reconstitutive galactose-epimerase activity inE. coliNucleic Acids Research, 1990
- Carbohydrate utilization in Streptococcus thermophilus: characterization of the genes for aldose 1-epimerase (mutarotase) and UDPglucose 4-epimeraseJournal of Bacteriology, 1990
- Crystal structures of two simple N-substituted dihydronicotinamides: possible implications for stereoelectronic arguments in enzymologyJournal of the American Chemical Society, 1988
- Gene organization and structure of the Streptomyces lividans gal operonJournal of Bacteriology, 1988
- An efficient general-purpose least-squares refinement program for macromolecular structuresActa Crystallographica Section A Foundations of Crystallography, 1987
- Crystal and molecular structure of the lithium salt of nicotinamide adenine dinucleotide dihydrate (NAD+, DPN+, cozymase, codehydrase I)Journal of the American Chemical Society, 1981
- The crystal structure of the dipotassium salt of uridine 5'-diphosphateActa Crystallographica Section B: Structural Science, Crystal Engineering and Materials, 1979