๐ A new lead for nonpeptidic active-site-directed inhibitors of the severe acute respiratory syndrome coronavirus main protease discovered by a combination of screening and docking methods
The coronavirus main protease, Mpro, is considered to be a major target for drugs suitable for combating coronavirus infections including severe acute respiratory syndrome (SARS). An HPLC-based screening of electrophilic compounds that was performed to identify potential Mpro inhibitors revealed etacrynic acid tert-butylamide (6a) as an effective nonpeptidic inhibitor. Docking studies suggested a binding mode in which the phenyl ring acts as a spacer bridging the inhibitor's activated double bond and its hydrophobic tert-butyl moiety. The latter is supposed to fit into the S4 pocket of the target protease. Furthermore, these studies revealed etacrynic acid amide (6b) as a promising lead for nonpeptidic active-site-directed Mpro inhibitors. In a fluorimetric enzyme assay using a novel fluorescence resonance energy transfer (FRET) pair labeled substrate, compound 6b showed a K i value of 35.3 ฮผM. Since the novel lead compound does not target the S1โฒ, S1, and S2 subsites of the enzyme's substrate-binding pockets, there is room for improvement that underlines the lead character of compound 6b. ยฉ 2005 American Chemical Society.
keywords
๐ severe acute (1373)
๐ main protease (44)
๐ resonance energy (16)
๐ coronavirus infection (270)
๐ respiratory syndrome (2004)
๐ acute respiratory (1734)
๐ energy transfer (19)
author
๐ค Kaeppler, Ulrich
๐ค Stiefl, Nikolaus
๐ค Schiller, Markus
๐ค Vicik, Radim
๐ค Breuning, Alexander
๐ค Schmitz, Werner
๐ค Rupprecht, Daniel
๐ค Schmuck, Carsten
๐ค Baumann, Knut
๐ค Ziebuhr, John
๐ค Schirmeister, Tanja
year
โฐ 2005
issn
๐ 00222623
volume
48
number
22
page
6832-6842
citedbycount
37
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