New amidated 3,6-diphenylated imidazopyridazines with potent antiplasmodium activity are dual inhibitors of Plasmodium phosphatidylinositol-4-kinase and cGMP-dependent protein kinase

dc.contributor.authorCheuka, Peter Mubanga
dc.contributor.authorCentani, Luyanda
dc.contributor.authorArendse, Lauren B.
dc.contributor.authorFienberg, Stephen
dc.contributor.authorWambua, Lynn
dc.contributor.authorRenga, Shoneeze S.
dc.contributor.authorDziwornu, Godwin Akpeko
dc.contributor.authorKumar, Malkeet
dc.contributor.authorLawrence, Nina
dc.contributor.authorTaylor, Dale
dc.contributor.authorWittlin, Sergio
dc.contributor.authorCoertzen, Dina
dc.contributor.authorReader, Janette
dc.contributor.authorVan der Watt, Mariette Elizabeth
dc.contributor.authorBirkholtz, Lyn-Marie
dc.contributor.authorChibale, Kelly
dc.date.accessioned2021-12-15T05:35:52Z
dc.date.available2021-12-15T05:35:52Z
dc.date.issued2021-01
dc.description.abstractRecent studies on 3,6-diphenylated imidazopyridazines have demonstrated impressive in vitro activity and in vivo efficacy in mouse models of malaria infection. Herein, we report the synthesis and antiplasmodium evaluation of a new series of amidated analogues and demonstrate that these compounds potently inhibit Plasmodium phosphatidylinositol-4-kinase (PI4K) type IIIβ while moderately inhibiting cyclic guanidine monophosphate (cGMP)-dependent protein kinase (PKG) activity in vitro. Using in silico docking, we predict key binding interactions for these analogues within the adenosine triphosphate (ATP)-binding site of PI4K and PKG, paving the way for structure-based optimization of imidazopyridazines targeting both Plasmodium PI4K and PKG. While several derivatives showed low nanomolar antiplasmodium activity (IC50 < 100 nM), some compounds, including piperazine analogue 28, resulted in strong dual PI4K and PKG inhibition. The compounds also demonstrated transmission-blocking potential, evident from their potent inhibition of early- and late-stage gametocytes. Finally, the current compounds generally showed improved aqueous solubility and reduced hERG (human ether-a-go-go-related gene) channel inhibition.en_ZA
dc.description.departmentBiochemistryen_ZA
dc.description.departmentGeneticsen_ZA
dc.description.departmentMicrobiology and Plant Pathologyen_ZA
dc.description.departmentUP Centre for Sustainable Malaria Control (UP CSMC)en_ZA
dc.description.librarianhj2021en_ZA
dc.description.sponsorshipThe University of Cape Town, South African Medical Research Council, and the South African Research Chairs Initiative of the Department of Science and Innovation administered through the South African National Research Foundation.en_ZA
dc.description.urihttps://pubs.acs.org/journal/aidcbcen_ZA
dc.identifier.citationheuka, P.M., Centani, L., Arendse, L.B. et al. 2021, 'New amidated 3,6-diphenylated imidazopyridazines with potent antiplasmodium activity are dual inhibitors of Plasmodium phosphatidylinositol-4-kinase and cGMP-dependent protein kinase', ACS Infectious Diseases, vol. 7, no. 1, pp. 34-46.en_ZA
dc.identifier.issn2373-8227 (print)
dc.identifier.issn2373-8227 (online)aidcbc
dc.identifier.other10.1021/acsinfecdis.0c00481
dc.identifier.urihttp://hdl.handle.net/2263/83065
dc.language.isoenen_ZA
dc.publisherAmerican Chemical Societyen_ZA
dc.rights© 2020 American Chemical Societyen_ZA
dc.subjectAmidesen_ZA
dc.subjectPeptides and proteinsen_ZA
dc.subjectParasitesen_ZA
dc.subjectPhotovoltaicsen_ZA
dc.subjectInhibitionen_ZA
dc.subjectCyclic guanidine monophosphate (cGMP)en_ZA
dc.subjectProtein kinase (PKG)en_ZA
dc.subjectAdenosine triphosphate (ATP)en_ZA
dc.subjectPlasmodium phosphatidylinositol-4-kinase (PI4K)en_ZA
dc.titleNew amidated 3,6-diphenylated imidazopyridazines with potent antiplasmodium activity are dual inhibitors of Plasmodium phosphatidylinositol-4-kinase and cGMP-dependent protein kinaseen_ZA
dc.typePostprint Articleen_ZA

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