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Exploring Aspartic Protease Inhibitor Binding to Design Selective Antimalarials

Authors :
Bobrovs, Raitis
Basens, Emils Edgars
Drunka, Laura
Kanepe, Iveta
Matisone, Sofija
Velins, Karlis Kristofers
Andrianov, Victor
Leitis, Gundars
Zelencova-Gopejenko, Diana
Rasina, Dace
Jirgensons, Aigars
Jaudzems, Kristaps
Source :
Journal of Chemical Information and Modeling; July 2022, Vol. 62 Issue: 13 p3263-3273, 11p
Publication Year :
2022

Abstract

Selectivity is a major issue in the development of drugs targeting pathogen aspartic proteases. Here, we explore the selectivity-determining factors by studying specifically designed malaria aspartic protease (plasmepsin) open-flap inhibitors. Metadynamics simulations are used to uncover the complex binding/unbinding pathways of these inhibitors and describe the critical transition states in atomistic resolution. The simulation results are compared with experimentally determined enzymatic activities. Our findings demonstrate that plasmepsin inhibitor selectivity can be achieved by targeting the flap loop with hydrophobic substituents that enable ligand binding under the flap loop, as such a behavior is not observed for several other aspartic proteases. The ability to estimate the selectivity of compounds before they are synthesized is of considerable importance in drug design; therefore, we expect that our approach will be useful in selective inhibitor designs against not only aspartic proteases but also other enzyme classes.

Details

Language :
English
ISSN :
15499596 and 1549960X
Volume :
62
Issue :
13
Database :
Supplemental Index
Journal :
Journal of Chemical Information and Modeling
Publication Type :
Periodical
Accession number :
ejs60193614
Full Text :
https://doi.org/10.1021/acs.jcim.2c00422