Structural, Kinetic, and Pharmacodynamic Mechanisms of d-Amino Acid Oxidase Inhibition by Small Molecules.
Articolo
Data di Pubblicazione:
2013
Abstract:
We characterized the mechanism and pharmacodynamics of five structurally distinct inhibitors of d-amino acid oxidase. All inhibitors bound the oxidized form of human enzyme with affinity slightly higher than that of benzoate (Kd ≈ 2-4 μM). Stopped-flow experiments showed that pyrrole-based inhibitors possessed high affinity (Kd ≈ 100-200 nM) and slow release kinetics (k < 0.01 s(-1)) in the presence of substrate, while inhibitors with pendent aromatic groups altered conformations of the active site lid, as evidenced by X-ray crystallography, and showed slower kinetics of association. Rigid bioisosteres of benzoic acid induced a closed-lid conformation, had slower release in the presence of substrate, and were more potent than benzoate. Steady-state d-serine concentrations were described in a PK/PD model, and competition for d-serine sites on NMDA receptors was demonstrated in vivo. DAAO inhibition increased the spatiotemporal influence of glial-derived d-serine, suggesting localized effects on neuronal circuits where DAAO can exert a neuromodulatory role.
Tipologia CRIS:
Articolo su Rivista
Elenco autori:
S. C., Hopkins; M. L. R., Heffernan; L. D., Saraswat; C. A., Bowen; L., Melnick; L. W., Hardy; M. A., Orsini; M. S., Allen; P., Koch; K. L., Spear; R. J., Foglesong; M., Soukri; M., Chytil; Q. K., Fang; S. W., Jones; M. A., Varney; A., Panatier; S. H. R., Oliet; Pollegioni, Loredano; Piubelli, Luciano; Molla, Gianluca; M., Nardini; T. H., Large
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