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Computational Chemogenomics Drug Repositioning Strategy Enables the Discovery of Epirubicin as a New Repurposed Hit for Plasmodium falciparum and P. vivax.
Ferreira, Letícia Tiburcio; Rodrigues, Juliana; Cassiano, Gustavo Capatti; Tavella, Tatyana Almeida; Tomaz, Kaira Cristina Peralis; Baia-da-Silva, Djane Clarys; Souza, Macejane Ferreira; Lima, Marilia Nunes do Nascimento; Mottin, Melina; Almeida, Ludimila Dias; Calit, Juliana; Puça, Maria Carolina Silva de Barros; Melo, Gisely Cardoso; Bargieri, Daniel Youssef; Lopes, Stefanie Costa Pinto; Lacerda, Marcus Vinicius Guimarães; Bilsland, Elizabeth; Sunnerhagen, Per; Neves, Bruno Junior; Andrade, Carolina Horta; Cravo, Pedro Vitor Lemos; Costa, Fabio Trindade Maranhão.
Afiliação
  • Ferreira LT; Laboratory of Tropical Diseases-Prof. Dr. Luiz Jacintho da Silva, Department of Genetics, Evolution, Microbiology and Immunology, University of Campinas-UNICAMP, Campinas, São Paulo, Brazil.
  • Rodrigues J; Laboratory of Molecular Modeling and Drug Design, LabMol, Faculdade de Farmácia, Universidade Federal de Goiás, Goiânia, Goiás, Brazil.
  • Cassiano GC; Laboratory of Tropical Diseases-Prof. Dr. Luiz Jacintho da Silva, Department of Genetics, Evolution, Microbiology and Immunology, University of Campinas-UNICAMP, Campinas, São Paulo, Brazil.
  • Tavella TA; Global Health and Tropical Medicine (GHTM), Instituto de Higiene e Medicina Tropical, Universidade Nova de Lisboa, Lisbon, Portugal.
  • Tomaz KCP; Laboratory of Tropical Diseases-Prof. Dr. Luiz Jacintho da Silva, Department of Genetics, Evolution, Microbiology and Immunology, University of Campinas-UNICAMP, Campinas, São Paulo, Brazil.
  • Baia-da-Silva DC; Laboratory of Tropical Diseases-Prof. Dr. Luiz Jacintho da Silva, Department of Genetics, Evolution, Microbiology and Immunology, University of Campinas-UNICAMP, Campinas, São Paulo, Brazil.
  • Souza MF; Instituto Leônidas e Maria Deane, Fundação Oswaldo Cruz-FIOCRUZ, Manaus, Amazonas, Brazil.
  • Lima MNDN; Instituto Leônidas e Maria Deane, Fundação Oswaldo Cruz-FIOCRUZ, Manaus, Amazonas, Brazil.
  • Mottin M; Fundação de Medicina Tropical-Dr. Heitor Vieira Dourado, Manaus, Amazonas, Brazil.
  • Almeida LD; Laboratory of Molecular Modeling and Drug Design, LabMol, Faculdade de Farmácia, Universidade Federal de Goiás, Goiânia, Goiás, Brazil.
  • Calit J; Laboratory of Molecular Modeling and Drug Design, LabMol, Faculdade de Farmácia, Universidade Federal de Goiás, Goiânia, Goiás, Brazil.
  • Puça MCSB; Synthetic Biology Laboratory, Department of Structural and Functional Biology, Institute of Biology, UNICAMP, Campinas, São Paulo, Brazil.
  • Melo GC; Department of Parasitology, Institute of Biomedical Sciences, University of São Paulo-USP, São Paulo, Brazil.
  • Bargieri DY; Instituto Leônidas e Maria Deane, Fundação Oswaldo Cruz-FIOCRUZ, Manaus, Amazonas, Brazil.
  • Lopes SCP; Fundação de Medicina Tropical-Dr. Heitor Vieira Dourado, Manaus, Amazonas, Brazil.
  • Lacerda MVG; Department of Parasitology, Institute of Biomedical Sciences, University of São Paulo-USP, São Paulo, Brazil.
  • Bilsland E; Instituto Leônidas e Maria Deane, Fundação Oswaldo Cruz-FIOCRUZ, Manaus, Amazonas, Brazil.
  • Sunnerhagen P; Fundação de Medicina Tropical-Dr. Heitor Vieira Dourado, Manaus, Amazonas, Brazil.
  • Neves BJ; Fundação de Medicina Tropical-Dr. Heitor Vieira Dourado, Manaus, Amazonas, Brazil.
  • Andrade CH; Synthetic Biology Laboratory, Department of Structural and Functional Biology, Institute of Biology, UNICAMP, Campinas, São Paulo, Brazil.
  • Cravo PVL; Department of Chemistry and Molecular Biology, University of Gothenburg, Gothenburg, Sweden.
  • Costa FTM; Laboratory of Molecular Modeling and Drug Design, LabMol, Faculdade de Farmácia, Universidade Federal de Goiás, Goiânia, Goiás, Brazil.
Article em En | MEDLINE | ID: mdl-32601162
ABSTRACT
Widespread resistance against antimalarial drugs thwarts current efforts for controlling the disease and urges the discovery of new effective treatments. Drug repositioning is increasingly becoming an attractive strategy since it can reduce costs, risks, and time-to-market. Herein, we have used this strategy to identify novel antimalarial hits. We used a comparative in silico chemogenomics approach to select Plasmodium falciparum and Plasmodium vivax proteins as potential drug targets and analyzed them using a computer-assisted drug repositioning pipeline to identify approved drugs with potential antimalarial activity. Among the seven drugs identified as promising antimalarial candidates, the anthracycline epirubicin was selected for further experimental validation. Epirubicin was shown to be potent in vitro against sensitive and multidrug-resistant P. falciparum strains and P. vivax field isolates in the nanomolar range, as well as being effective against an in vivo murine model of Plasmodium yoelii Transmission-blocking activity was observed for epirubicin in vitro and in vivo Finally, using yeast-based haploinsufficiency chemical genomic profiling, we aimed to get insights into the mechanism of action of epirubicin. Beyond the target predicted in silico (a DNA gyrase in the apicoplast), functional assays suggested a GlcNac-1-P-transferase (GPT) enzyme as a potential target. Docking calculations predicted the binding mode of epirubicin with DNA gyrase and GPT proteins. Epirubicin is originally an antitumoral agent and presents associated toxicity. However, its antiplasmodial activity against not only P. falciparum but also P. vivax in different stages of the parasite life cycle supports the use of this drug as a scaffold for hit-to-lead optimization in malaria drug discovery.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Malária Vivax / Antimaláricos Tipo de estudo: Prognostic_studies Limite: Animals Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Malária Vivax / Antimaláricos Tipo de estudo: Prognostic_studies Limite: Animals Idioma: En Ano de publicação: 2020 Tipo de documento: Article