Abstract
Two peptidomimetic inhibitors based on a novel epoxyalcohol core were designed to target the epoxide ring at the catalytic aspartates of HIV-protease for irreversible inhibition of the enzyme. The inhibitors were synthesized with a multi-step approach which includes Horner-Emmons olefination of a phenylalanine-derived phosphono ketone, stereoselective reduction of the resulting trans-enones to allylic alcohols and syn-epoxidation of the latters. The epoxyalcohols thus obtained were assayed for their ability to inhibit HIV-PR and were shown to inhibit the protease with IC50 values of 39 and 150 μM, respectively. This confirms that the designed epoxides are recognised with fairly good affinity by the enzyme's active site, a pre-requisite for selective irreversible inhibition.
Author supplied keywords
Cite
CITATION STYLE
Benedetti, F., Berti, F., Miertus, S., Romeo, D., Schillani, F., & Tossi, A. (2003). Design, synthesis and preliminary evaluation of peptidomimetic inhibitorsof HIV aspartic protease with an epoxyalcohol core. Arkivoc, 2003(14), 140–154. https://doi.org/10.3998/ark.5550190.0004.e13
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.