Identification of potential inhibitors of casein kinase 2 alpha of Plasmodium falciparum with potent in vitro activity

Author:

Tomaz Kaira C. P.1,Tavella Tatyana A.1,Borba Joyce V. B.12,Salazar-Alvarez Luis C.1,Levandoski João E.3,Mottin Melina2,Sousa Bruna K. P.2,Moreira-Filho José T.2,Almeida Vitor M.4,Clementino Leandro C.1,Bourgard Catarina15,Massirer Katlin B.4,Couñago Rafael M.46ORCID,Andrade Carolina H.278,Sunnerhagen Per5ORCID,Bilsland Elizabeth9,Cassiano Gustavo C.110ORCID,Costa Fabio T. M.1ORCID

Affiliation:

1. Laboratory of Tropical Diseases (LDT), Institute of Biology, University of Campinas , Campinas, Brazil

2. Laboratory of Molecular Modeling and Drug Design (LabMol), Faculty of Pharmacy, Universidade Federal de Goiás (UFG) , Goiânia, Brazil

3. Department of Materials and Bioprocesses Engineering, School of Chemical Engineering, University of Campinas , Campinas, Brazil

4. Centro de Química Medicinal (CQMED), Centro de Biologia Molecular e Engenharia Genética(CBMEG), Universidade Estadual de Campinas (UNICAMP) , Campinas, Brazil

5. Department of Chemistry and Molecular Biology, University of Gothenburg , Gothenburg, Sweden

6. Structural Genomics Consortium, UNC Eshelman School of Pharmacy, University of North Carolina at Chapel Hill , Chapel Hill, North Carolina, USA

7. Center for Research and Advancement of Fragments and Molecular Targets (CRAFT), University of São Paulo , São Paulo, Brazil

8. Center for Excellence in Artificial Intelligence (CEIA), Institute of Informatics, Universidade Federal de Goiás , Goiânia, Brazil

9. Department of Structural and Functional Biology, Synthetic Biology Laboratory, Institute of Biology, University of Campinas , Campinas, Brazil

10. Global Health and Tropical Medicine (GHTM), Instituto de Higiene e Medicina Tropical, Universidade Nova de Lisboa , Lisbon, Portugal

Abstract

ABSTRACT Drug resistance to commercially available antimalarials is a major obstacle in malaria control and elimination, creating the need to find new antiparasitic compounds with novel mechanisms of action. The success of kinase inhibitors for oncological treatments has paved the way for the exploitation of protein kinases as drug targets in various diseases, including malaria. Casein kinases are ubiquitous serine/threonine kinases involved in a wide range of cellular processes such as mitotic checkpoint signaling, DNA damage response, and circadian rhythm. In Plasmodium , it is suggested that these protein kinases are essential for both asexual and sexual blood-stage parasites, reinforcing their potential as targets for multi-stage antimalarials. To identify new putative Pf CK2α inhibitors, we utilized an in silico chemogenomic strategy involving virtual screening with docking simulations and quantitative structure-activity relationship predictions. Our investigation resulted in the discovery of a new quinazoline molecule ( 542 ), which exhibited potent activity against asexual blood stages and a high selectivity index (>100). Subsequently, we conducted chemical-genetic interaction analysis on yeasts with mutations in casein kinases. Our chemical-genetic interaction results are consistent with the hypothesis that 542 inhibits yeast Cka1, which has a hinge region with high similarity to Pf CK2α. This finding is in agreement with our in silico results suggesting that 542 inhibits Pf CK2α via hinge region interaction.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

L'Oreal USA

Vetenskapsrådet

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

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