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J Comput Aided Mol Des ; 35(3): 297-314, 2021 03.
Artigo em Inglês | MEDLINE | ID: mdl-33615401

RESUMO

Leishmaniasis is an infectious disease caused by parasites of the genus Leishmania and transmitted by the bite of a sand fly. To date, most available drugs for treatment are toxic and beyond the economic means of those affected by the disease. Protein disulfide isomerase (PDI) is a chaperone protein that plays a major role in the folding of newly synthesized proteins, specifically assisting in disulfide bond formation, breakage, or rearrangement in all non-native proteins. In previous work, we demonstrated that Leishmania major PDI (LmPDI) has an essential role in pathogen virulence. Furthermore, inhibition of LmPDI further blocked parasite infection in macrophages. In this study, we utilized a computer-aided approach to design a series of LmPDI inhibitors. Fragment-based virtual screening allowed for the understanding of the inhibitors' modes of action on LmPDI active sites. The generated compounds obtained after multiple rounds of virtual screening were synthesized and significantly inhibited target LmPDI reductase activity and were shown to decrease in vitro parasite growth in human monocyte-derived macrophages. This novel cheminformatics and synthetic approach led to the identification of a new series of compounds that might be optimized into novel drugs, likely more specific and less toxic for the treatment of leishmaniasis.


Assuntos
Anti-Infecciosos/síntese química , Inibidores Enzimáticos/química , Hexaclorofeno/síntese química , Leishmania major/enzimologia , Leishmaniose/tratamento farmacológico , Isomerases de Dissulfetos de Proteínas/antagonistas & inibidores , Bibliotecas de Moléculas Pequenas/síntese química , Anti-Infecciosos/farmacologia , Domínio Catalítico , Desenho Assistido por Computador , Desenho de Fármacos , Inibidores Enzimáticos/farmacologia , Hexaclorofeno/farmacologia , Humanos , Simulação de Acoplamento Molecular , Ligação Proteica , Conformação Proteica , Bibliotecas de Moléculas Pequenas/farmacologia , Relação Estrutura-Atividade
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