The druggable antimalarial target PfDXR : overproduction strategies and kinetic characterization

dc.contributor.authorGoble, Jessica L.
dc.contributor.authorJohnson, Hailey
dc.contributor.authorDe Ridder, Jaco
dc.contributor.authorStephens, Linda L.
dc.contributor.authorLouw, Abraham Izak
dc.contributor.authorBlatch, Gregory L.
dc.contributor.authorBoshoff, Aileen
dc.date.accessioned2014-04-01T09:54:42Z
dc.date.available2014-04-01T09:54:42Z
dc.date.issued2013
dc.description.abstractPlasmodium falciparum 1–deoxy–D–xylulose–5–phosphate reductoisomerase (PfDXR) is a key enzyme in the synthesis of isoprenoids in the malaria parasite, using a pathway that is absent in the human host. This enzyme is receiving attention as it has been validated as a promising drug target. However, an impediment to the characterisation of this enzyme has been the inability to obtain sufficient quantities of the enzyme in a soluble and functional form. The expression of PfDXR from the codon harmonised coding region, under conditions of strongly controlled transcription and induction, resulted in a yield of 2 – 4 mg/L of enzyme, which is 8 to 10–fold higher than previously reported yields. The kinetic parameters Km, Vmax and kcat were determined for PfDXR using an NADPH–dependent assay. Residues K295 and K297, unique to species of Plasmodium and located in the catalytic hatch region; and residues V114 and N115, essential for NADPH binding, were mutated to resemble those found in E. coli DXR. Interestingly, these mutations decreased the substrate affinity of PfDXR to values resembling that of E. coli DXR. PfDXR-K295N, K297S and PfDXR-V114A, N115G demonstrated a decreased ability to turnover substrate by 4–fold and 2-fold respectively in comparison to PfDXR. This study indicates a difference in the role of the catalytic hatch in capturing substrate by species of Plasmodium. The results of this study could contribute to the development of inhibitors of PfDXR.en_US
dc.description.librarianhb2014en_US
dc.description.sponsorshipNational Research Foundation Grant awarded to AB (Thuthuka Programme) and a SAMI Grant awarded to GLB. LSS was awarded a post–doctoral bursary by the South African Malaria Initiative programme; JG was awarded a PhD bursary by SAMI and National Research Foundation and HJ was awarded an Honours bursary by Rhodes University.en_US
dc.description.urihttp://www.eurekaselect.com/628/journal/protein-amp-peptide-lettersen_US
dc.identifier.citationGoble, JL, Johnson, H, De Ridder, J, Stephens, LL, Louw, A, Blatch, GL & Boshoff, A 2013, 'The druggable antimalarial target PfDXR : overproduction strategies and kinetic characterization', Protein and Peptide Letters, vol. 20, no. 2, pp.115-124.en_US
dc.identifier.issn0929-8665 (print)
dc.identifier.issn1875-5305 (online)
dc.identifier.urihttp://hdl.handle.net/2263/37332
dc.language.isoenen_US
dc.publisherBentham Science Publisheren_US
dc.rightsBentham Science Publishersen_US
dc.subjectPlasmodium falciparumen_US
dc.subjectDXRen_US
dc.subjectAnti–malarialen_US
dc.subjectHeterologous expressionen_US
dc.subjectMolecular chaperonesen_US
dc.titleThe druggable antimalarial target PfDXR : overproduction strategies and kinetic characterizationen_US
dc.typePreprint Articleen_US

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