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Beyond the MEP Pathway: A novel kinase required for prenol utilization by malaria parasites

PLOS Pathogens. 2024-12; 
Marcell Crispim; Ignasi Bofill Verdaguer; Agust n Hern ndez; Thales Kronenberger; ngel Fenollar; Lydia Fumiko Yamaguchi; Mar a P a Alberione; Miriam Ramirez; Sandra Souza de Oliveira; Alejandro Miguel Katzin; Luis Izquierdo; Kirk W. Deitsch; James J Collins III; Kirk W. Deitsch; James J Collins III; Kirk W. Deitsch; James J Collins III; Kirk W. Deitsch; James J Collins III
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PCR Cloning and Subcloning vector (p416-GPD) or with p416-GPD-PfNF54_070015200 (hereafter referred to as p416- Pf PolK, i.e., cloned with the Plasmodium Pf PolK gene optimized by Genscript for expression in yeast). Yeast expression vectors were transformed into yeasts by the lithium acetate method [ 84 ]. Transformed yeasts were routinely Get A Quote

摘要

A proposed treatment for malaria is a combination of fosmidomycin and clindamycin. Both compounds inhibit the methylerythritol 4-phosphate (MEP) pathway, the parasitic source of farnesyl and geranylgeranyl pyrophosphate (FPP and GGPP, respectively). Both FPP and GGPP are crucial for the biosynthesis of several essential metabolites such as ubiquinone and dolichol, as well as for protein prenylation. Dietary prenols, such as farnesol (FOH) and geranylgeraniol (GGOH), can rescue parasites from MEP inhibitors, suggesting the existence of a missing pathway for prenol salvage via phosphorylation. In this study, we identified a gene in the genome of P . falciparum , encoding a transmembrane prenol kinase (PolK) invol... More

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