Structural Studies on Bioactive Compounds. 30. Crystal Structure and Molecular Modeling Studies on the Pneumocystis carinii Dihydrofolate Reductase Cofactor Complex with TAB, a Highly Selective Antifolate,,
- 7 March 2000
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 39 (13) , 3556-3564
- https://doi.org/10.1021/bi9924563
Abstract
The crystal structure of the ternary complex of NADPH, the potent antifolate [2,4-diamino-5-{3-[3-(2-acetyloxyethyl)-3-benzyltriazen-1-yl]-4-chlorophenyl}-6-ethylpyrimidine] (TAB, 1) and Pneumocystis carinii dihydrofolate reductase (pcDHFR), refined to 2.1 Å resolution, reveals that TAB binds similar to the antifolates trimethoprim and methotrexate. These data also reveal multiple conformations for the binding geometry of TAB with two preferred orientations of the acetyloxy and benzyl groups that results from a 180° rotation about the N2−N3 triazenyl bond. The methyl of the acetyloxy and benzyl ring of TAB probes large hydrophobic regions of the p-aminobenzoyl folate binding pocket of the active site, in particular the region near Phe69, which is unique to the pcDHFR sequence. These results confirm prior molecular modeling investigations of the binding of TAB to pcDHFR that identified four low-energy binding geometries, two involving rotations about the terminal N(2)−N(3) triazenyl linkage and two involving atropisomerism about the pivotal pyrimethamine−phenyl bond. The primary differences in the molecular dynamics (MD) models and those observed in this crystal complex result from small conformational changes in active-site residues on energy minimization. However, two MD models place the acetyloxy and benzyl ring groups in a region of the active site between the cofactor-binding region and the p-aminobenzoyl folate pocket; an orientation never observed in any DHFR crystal structure to date. These conformers interact with solvent near the enzyme surface and are probably not observed due to the loss of specific hydrogen bonds with the enzyme. The high species pcDHFR selectivity of TAB could be the result of ligand flexibility that enables multiple binding orientations at the enzyme active site. Further modification of the acetyloxy region of TAB could increase its potency and selectivity for pcDHFR.Keywords
This publication has 14 references indexed in Scilit:
- 1,2-Bis(1-aryl-3-alkyltriazen-3-yl)ethanes and related compoundsCanadian Journal of Chemistry, 1998
- Comparison of Ternary Complexes ofPneumocystis cariniiand Wild-Type Human Dihydrofolate Reductase with Coenzyme NADPH and a Novel Classical Antitumor Furo[2,3-d]pyrimidine AntifolateActa Crystallographica Section D-Biological Crystallography, 1997
- Molecular dynamics simulations of the docking of substituted N5- deazapterins to dihydrofolate reductaseProtein Engineering, Design and Selection, 1997
- Polythermal screening and production methods for macromolecular crystallizationActa Crystallographica Section A Foundations of Crystallography, 1996
- Molecular docking towards drug discoveryJournal of Molecular Recognition, 1996
- New Drug Developments for Opportunistic Infections in Immunosuppressed Patients: Pneumocystis cariniiJournal of Medicinal Chemistry, 1995
- A Second Generation Force Field for the Simulation of Proteins, Nucleic Acids, and Organic MoleculesJournal of the American Chemical Society, 1995
- PROCHECK: a program to check the stereochemical quality of protein structuresJournal of Applied Crystallography, 1993
- Incorporation of fast Fourier transforms to speed restrained least-squares refinement of protein structuresJournal of Applied Crystallography, 1987
- An all atom force field for simulations of proteins and nucleic acidsJournal of Computational Chemistry, 1986