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Pantothenamides Are Potent, On-Target Inhibitors of Plasmodium falciparum Growth When Serum Pantetheinase Is Inactivated

dc.contributor.authorSpry, Christina
dc.contributor.authorMacuamule, Cristiano
dc.contributor.authorLin, Zhiyang
dc.contributor.authorVirga, Kristopher G.
dc.contributor.authorLee, Richard E.
dc.contributor.authorStrauss, Erick
dc.contributor.authorSaliba, Kevin J.
dc.date.accessioned2015-11-26T03:30:07Z
dc.date.available2015-11-26T03:30:07Z
dc.date.issued2013-02-06
dc.date.updated2015-12-11T07:33:07Z
dc.description.abstractGrowth of the virulent human malaria parasite Plasmodium falciparum is dependent on an extracellular supply of pantothenate (vitamin B(5)) and is susceptible to inhibition by pantothenate analogues that hinder pantothenate utilization. In this study, on the hunt for pantothenate analogues with increased potency relative to those reported previously, we screened a series of pantothenamides (amide analogues of pantothenate) against P. falciparum and show for the first time that analogues of this type possess antiplasmodial activity. Although the active pantothenamides in this series exhibit only modest potency under standard in vitro culture conditions, we show that the potency of pantothenamides is selectively enhanced when the parasite culture medium is pre-incubated at 37°C for a prolonged period. We present evidence that this finding is linked to the presence in Albumax II (a serum-substitute routinely used for in vitro cultivation of P. falciparum) of pantetheinase activity: the activity of an enzyme that hydrolyzes the pantothenate metabolite pantetheine, for which pantothenamides also serve as substrates. Pantetheinase activity, and thereby pantothenamide degradation, is reduced following incubation of Albumax II-containing culture medium for a prolonged period at 37°C, revealing the true, sub-micromolar potency of pantothenamides. Importantly we show that the potent antiplasmodial effect of pantothenamides is attenuated with pantothenate, consistent with the compounds inhibiting parasite proliferation specifically by inhibiting pantothenate and/or CoA utilization. Additionally, we show that the pantothenamides interact with P. falciparum pantothenate kinase, the first enzyme involved in converting pantothenate to coenzyme A. This is the first demonstration of on-target antiplasmodial pantothenate analogues with sub-micromolar potency, and highlights the potential of pantetheinase-resistant pantothenamides as antimalarial agents.
dc.description.sponsorshipAspects of this work were supported by grants from the South African Malaria Initiative (SAMI) to ES and KJS and the American Lebanese Syrian Associated Charities (ALSAC), St. Jude Children’s Research Hospital, to REL. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.en_AU
dc.identifier.issn1932-6203en_AU
dc.identifier.urihttp://hdl.handle.net/1885/16828
dc.publisherPublic Library of Science
dc.rights© 2013 Spry et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
dc.sourcePLoS ONE
dc.source.urihttp://journals.plos.org/plosone/article?id=10.1371/journal.pone.0054974en_AU
dc.subjectamides
dc.subjectamidohydrolases
dc.subjectantimalarials
dc.subjectcells, cultured
dc.subjectcoenzyme a
dc.subjecterythrocytes
dc.subjectgpi-linked proteins
dc.subjecthumans
dc.subjectmalaria, falciparum
dc.subjectpantothenic acid
dc.subjectphosphorylation
dc.subjectphosphotransferases (alcohol group acceptor)
dc.subjectplasmodium falciparum
dc.subjectrecombinant proteins
dc.titlePantothenamides Are Potent, On-Target Inhibitors of Plasmodium falciparum Growth When Serum Pantetheinase Is Inactivated
dc.typeJournal article
local.bibliographicCitation.issue2en_AU
local.bibliographicCitation.lastpage12
local.bibliographicCitation.startpagee54974en_AU
local.contributor.affiliationSpry, Christina, College of Medicine, Biology and Environment, CMBE Research School of Biology, Division of Biomedical Science and Biochemistry, The Australian National Universityen_AU
local.contributor.affiliationMacuamule, Cristiano, Stellenbosch University, South Africaen_AU
local.contributor.affiliationLin, Zhiyang, College of Engineering and Computer Science, College of Engineering and Computer Science, Research School of Engineering, The Australian National Universityen_AU
local.contributor.affiliationVirga, Kristopher G, University of Tennessee, United States of Americaen_AU
local.contributor.affiliationLee, Richard E, University of Tennessee, United States of Americaen_AU
local.contributor.affiliationStrauss, Erick, University of Stellenbosch, South Africaen_AU
local.contributor.affiliationSaliba, Kevin, College of Medicine, Biology and Environment, CMBE Research School of Biology, Division of Biomedical Science and Biochemistry, The Australian National Universityen_AU
local.contributor.authoruidSpry, Christina, u3359155en_AU
local.description.notesImported from ARIESen_AU
local.identifier.absfor060500en_AU
local.identifier.ariespublicationf5625xPUB2550en_AU
local.identifier.citationvolume8en_AU
local.identifier.doi10.1371/journal.pone.0054974en_AU
local.identifier.essn1932-6203en_AU
local.identifier.scopusID2-s2.0-84873558652
local.identifier.thomsonID000315153400044
local.publisher.urlhttp://journals.plos.org/en_AU
local.type.statusPublished Versionen_AU

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