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Pharmacophore Modeling for Anti-Chagas Drug Design Using the Fragment Molecular Orbital Method
Authors:Ryunosuke Yoshino  Nobuaki Yasuo  Daniel Ken Inaoka  Yohsuke Hagiwara  Kazuki Ohno  Masaya Orita  Masayuki Inoue  Tomoo Shiba  Shigeharu Harada  Teruki Honma  Emmanuel Oluwadare Balogun  Josmar Rodrigues da Rocha  Carlos Alberto Montanari  Kiyoshi Kita  Masakazu Sekijima
Abstract:BackgroundChagas disease, caused by the parasite Trypanosoma cruzi, is a neglected tropical disease that causes severe human health problems. To develop a new chemotherapeutic agent for the treatment of Chagas disease, we predicted a pharmacophore model for T. cruzi dihydroorotate dehydrogenase (TcDHODH) by fragment molecular orbital (FMO) calculation for orotate, oxonate, and 43 orotate derivatives.Conclusions/SignificanceFMO-based interaction energy analyses revealed a pharmacophore model for TcDHODH inhibitor. Hydrogen bond acceptor pharmacophores correspond to Lys43 and Lys214, hydrogen bond donor and acceptor pharmacophores correspond to Asn67 and Asn194, and the aromatic ring pharmacophore corresponds to FMN, which shows important characteristics of compounds that inhibit TcDHODH. In addition, the Lys214 residue is not conserved between TcDHODH and human DHODH. Our analysis suggests that these orotate derivatives should preferentially bind to TcDHODH, increasing their selectivity. Our results obtained by pharmacophore modeling provides insight into the structural requirements for the design of TcDHODH inhibitors and their development as new anti-Chagas drugs.
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