Participation of Histidine-51 in Catalysis by Horse Liver Alcohol Dehydrogenase,
- 14 February 2004
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 43 (11) , 3014-3026
- https://doi.org/10.1021/bi036103m
Abstract
Histidine-51 in horse liver alcohol dehydrogenase (ADH) is part of a hydrogen-bonded system that appears to facilitate deprotonation of the hydroxyl group of water or alcohol ligated to the catalytic zinc. The contribution of His-51 to catalysis was studied by characterizing ADH with His-51 substituted with Gln (H51Q). The steady-state kinetic constants for ethanol oxidation and acetaldehyde reduction at pH 8 are similar for wild-type and H51Q enzymes. In contrast, the H51Q substitution significantly shifts the pH dependencies for steady-state and transient reactions and decreases by 11-fold the rate constant for the transient oxidation of ethanol at pH 8. Modest substrate deuterium isotope effects indicate that hydride transfer only partially limits the transient oxidation and turnover. Transient data show that the H51Q substitution significantly decreases the rate of isomerization of the enzyme-NAD(+) complex and becomes a limiting step for ethanol oxidation. Isomerization of the enzyme-NAD(+) complex is rate limiting for acetaldehyde reduction catalyzed by the wild-type enzyme, but release of alcohol is limiting for the H51Q enzyme. X-ray crystallography of doubly substituted His51Gln:Lys228Arg ADH complexed with NAD(+) and 2,3- or 2,4-difluorobenzyl alcohol shows that Gln-51 isosterically replaces histidine in interactions with the nicotinamide ribose of the coenzyme and that Arg-228 interacts with the adenosine monophosphate of the coenzyme without affecting the protein conformation. The difluorobenzyl alcohols bind in one conformation. His-51 participates in, but is not essential for, proton transfers in the mechanism.Keywords
This publication has 12 references indexed in Scilit:
- Enzymatic Mechanism of Low-Activity Mouse Alcohol Dehydrogenase 2Biochemistry, 2004
- Computational Studies of the Mechanism for Proton and Hydride Transfer in Liver Alcohol DehydrogenaseJournal of the American Chemical Society, 2000
- AMoRe: an automated package for molecular replacementActa Crystallographica Section A Foundations of Crystallography, 1994
- Automatic processing of rotation diffraction data from crystals of initially unknown symmetry and cell constantsJournal of Applied Crystallography, 1993
- PROCHECK: a program to check the stereochemical quality of protein structuresJournal of Applied Crystallography, 1993
- Effect of NADH on the pKa of Zinc‐Bound Water in Liver Alcohol DehydrogenaseEuropean Journal of Biochemistry, 1981
- Effect of pH on Coenzyme Binding to Liver Alcohol DehydrogenaseEuropean Journal of Biochemistry, 1979
- Solvent deuterium isotope effect on the liver alcohol dehydrogenase reactionJournal of the American Chemical Society, 1979
- Effect of pH on the Process of Ternary‐Complex Interconversion in the liver‐Alcohol‐Dehydrogenase ReactionEuropean Journal of Biochemistry, 1978
- A study of the ionic properties of the essential histidine residue of yeast alcohol dehydrogenase in complexes of the enzyme with its coenzymes and substratesBiochemical Journal, 1977