Conformational studies of irreversible HIV-1 protease inhibitors containing cis-epoxide as an amide isostere. NLM AIDSLINE Important note: Information in this article was accurate in 2000. The state of the art may have changed since the publication date.

Click here to return to AIDSLINE main menu
DonateNow
Print this Article


Conformational studies of irreversible HIV-1 protease inhibitors containing cis-epoxide as an amide isostere.

J Pept Res. 1999 Sep;54(3):242-8. Unique Identifier : AIDSLINE MED/99444750
Ro S; Baek SG; Lee B; Ok JH; Biotech Research Institute, LG Chemical Ltd, Research Park,; Taejon, Korea.


Abstract: We have carried out NMR and molecular modeling studies of peptidomimetic HIV-1 protease inhibitors, LB71116: Qc-Asn-Phepsi[(1R,2S)-cis-epoxide]Gly-NH-CH(isopropyl)2 where Qc stands for quinaldic acid and LB71148: Qc-(SMe)Pen(O)2-Phepsi[(1R,2S)-cis-epoxide]Gly-NH-CH(isoprop yl)2 where (SMe)Pen(O)2 stands for S-methyl-S-dioxo-penicillamine. Through conformational calculations and NMR data analysis, we have obtained preferred conformations of the two inhibitors in solution. To our knowledge, this work is one of the first extensive conformational studies of peptidomimetics containing cis-epoxide amide isostere. The resulting preferred conformations contain extended structures. In these conformations, the psi of Phe(cep) is maintained about 130 degrees and the phi angle of (cep)Gly prefers +/- 150 degrees [where Phe(cep) and (cep)Gly are the residues generated by the replacement of the Phe-Gly peptide bond with cis-epoxide]. Two conformations were commonly observed in the preferred conformations of each inhibitor. Through restrained molecular dynamics simulating the hydrogen bond formation between our inhibitor and a water molecule ('flap water'), one of the conformations is assumed as the conformation which can bind to the enzyme without large conformational changes. Recently, we had the opportunity to compare the selected preferred conformation with the binding conformation of LB71116 observed from the X-ray studies of the complex between LB71116 and HIV-1 protease. These two conformations are surprisingly similar to each other. Thus, we can explain high activity and selectivity of our inhibitors to the HIV-1 protease by the similarity between the preferred conformations in solution and the binding conformation.


Keywords: JOURNAL ARTICLE Amides/CHEMISTRY Crystallography, X-Ray Epoxy Compounds/*CHEMISTRY HIV Protease Inhibitors/*CHEMISTRY/CHEMICAL SYNTHESIS HIV-1/*CHEMISTRY Kinetics Models, Molecular Models, Structural Nuclear Magnetic Resonance Oligopeptides/*CHEMISTRY/CHEMICAL SYNTHESIS *Protein Conformation Protein Structure, Secondary

KWDjournalarticleamides/chemistrycrystallography,x-rayepoxycompounds/KWDchemistryhivproteaseinhibitors/KWDchemistry/chemicalsynthesishiv-1/KWDchemistrykineticsmodels,molecularmodels,structuralnuclearmagneticresonanceoligopeptides/KWDchemistry/chemicalsynthesisKWDproteinconformationproteinstructure,secondary
000430
A0040892


Copyright © 2000 - National Library of Medicine. Reproduced under license with the National Library of Medicine, Bethesda, MD.

AEGiS is a 501(c)3, not-for-profit, tax-exempt, educational corporation. AEGiS is made possible through unrestricted funding from Elton John AIDS Foundation, the National Library of Medicine, and donations from users like you. Always watch for outdated information. This article first appeared in 2000. This material is designed to support, not replace, the relationship that exists between you and your doctor.

AEGiS presents published material, reprinted with permission and neither endorses nor opposes any material. All information contained on this website, including information relating to health conditions, products, and treatments, is for informational purposes only. It is often presented in summary or aggregate form. It is not meant to be a substitute for the advice provided by your own physician or other medical professionals. Always discuss treatment options with a doctor who specializes in treating HIV.

Copyright ©1980, 2000. AEGiS. All materials appearing on AEGiS are protected by copyright as a collective work or compilation under U.S. copyright and other laws and are the property of AEGiS, or the party credited as the provider of the content. .