Molecular Modeling of the Aldose Reductase-Inhibitor Complex Based on the X-ray Crystal Structure and Studies with Single-Site-Directed Mutants
- 25 February 2000
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of Medicinal Chemistry
- Vol. 43 (6), 1062-1070
- https://doi.org/10.1021/jm990168z
Abstract
Aldose reductase (AR) has been implicated in the etiology of the secondary complications of diabetes. This enzyme catalyzes the reduction of glucose to sorbitol using nicotinamide adenine dinucleotide phosphate as an essential cofactor. AR has been localized at the sites of tissue damage, and inhibitors of this enzyme prevent the development of neuropathy, nephropathy, retinopathy, and cataract formation in animal models of diabetes. The crystal structure of AR complexed with zopolrestat, a potent inhibitor of AR, has been described.1 We have generated a model of the AR-inhibitor complex based on the reported Cα coordinates of the protein and results of a structure−activity relationship study using four structurally distinct classes of inhibitors, recombinant human AR, and four single-site-directed mutants of this enzyme. The effects of the site-directed mutations on residues within the active site of the enzyme were evaluated by average interaction energy calculations and by calculations of carbon atom surface area changes. These values correlated well with the IC50 values for zopolrestat with the wild-type and mutant enzymes, validating the model. On the basis of the zopolrestat-binding model, we have proposed binding models for 10 other AR inhibitors. Our models have enabled us to gain a qualitative understanding of the binding domains of the enzyme and how different inhibitors impact the size and shape of the binding site.Keywords
This publication has 10 references indexed in Scilit:
- Probing the inhibitor‐binding site of aldose reductase with site‐directed mutagenesisEuropean Journal of Biochemistry, 1998
- A ‘specificity’ pocket inferred from the crystal structures of the complexes of aldose reductase with the pharmaceutically important inhibitors tolrestat and sorbinilStructure, 1997
- An Anion Binding Site in Human Aldose Reductase: Mechanistic Implications for the Binding of Citrate, Cacodylate, and Glucose 6-PhosphateBiochemistry, 1994
- Fast drug-receptor mapping by site-directed distances: a novel method of predicting new pharmacological leadsJournal of Chemical Information and Computer Sciences, 1991
- Conserving energy during molecular dynamics simulations of water, proteins, and proteins in waterJournal of Computational Chemistry, 1990
- Using shape complementarity as an initial screen in designing ligands for a receptor binding site of known three-dimensional structureJournal of Medicinal Chemistry, 1988
- Biosynthetic origin of the carbon skeleton and oxygen atoms of nargenicin A1Journal of the American Chemical Society, 1984
- Ground Water Contamination in the United StatesScience, 1983
- Comparison of simple potential functions for simulating liquid waterThe Journal of Chemical Physics, 1983
- Iterative partial equalization of orbital electronegativity—a rapid access to atomic chargesTetrahedron, 1980