Literature DB >> 26783558

Plasmodium IspD (2-C-Methyl-D-erythritol 4-Phosphate Cytidyltransferase), an Essential and Druggable Antimalarial Target.

Leah S Imlay1, Christopher M Armstrong2, Mary Clare Masters2, Ting Li3, Kathryn E Price4, Rachel L Edwards2, Katherine M Mann1, Lucy X Li1, Christina L Stallings1, Neil G Berry4, Paul M O'Neill4, Audrey R Odom5.   

Abstract

As resistance to current therapies spreads, novel antimalarials are urgently needed. In this work, we examine the potential for therapeutic intervention via the targeting of Plasmodium IspD (2-C-methyl-D-erythritol 4-phosphate cytidyltransferase), the second dedicated enzyme of the essential methylerythritol phosphate (MEP) pathway for isoprenoid biosynthesis. Enzymes of this pathway represent promising therapeutic targets because the pathway is not present in humans. The Malaria Box compound, MMV008138, inhibits Plasmodium falciparum growth, and PfIspD has been proposed as a candidate intracellular target. We find that PfIspD is the sole intracellular target of MMV008138 and characterize the mode of inhibition and target-based resistance, providing chemical validation of this target. Additionally, we find that the Pf ISPD genetic locus is refractory to disruption in malaria parasites, providing independent genetic validation for efforts targeting this enzyme. This work provides compelling support for IspD as a druggable target for the development of additional, much-needed antimalarial agents.

Entities:  

Keywords:  IspD; MEP pathway; MMV008138; homology model; malaria; plasmodium

Year:  2015        PMID: 26783558      PMCID: PMC4714788          DOI: 10.1021/id500047s

Source DB:  PubMed          Journal:  ACS Infect Dis        ISSN: 2373-8227            Impact factor:   5.084


  51 in total

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4.  Fosmidomycin-clindamycin for Plasmodium falciparum Infections in African children.

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Journal:  Proc Natl Acad Sci U S A       Date:  2008-06-25       Impact factor: 11.205

7.  Artemisinin resistance in Plasmodium falciparum malaria.

Authors:  Arjen M Dondorp; François Nosten; Poravuth Yi; Debashish Das; Aung Phae Phyo; Joel Tarning; Khin Maung Lwin; Frederic Ariey; Warunee Hanpithakpong; Sue J Lee; Pascal Ringwald; Kamolrat Silamut; Mallika Imwong; Kesinee Chotivanich; Pharath Lim; Trent Herdman; Sen Sam An; Shunmay Yeung; Pratap Singhasivanon; Nicholas P J Day; Niklas Lindegardh; Duong Socheat; Nicholas J White
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9.  The open access malaria box: a drug discovery catalyst for neglected diseases.

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10.  Francisella tularensis 2-C-methyl-D-erythritol 4-phosphate cytidylyltransferase: kinetic characterization and phosphoregulation.

Authors:  Arthur Tsang; Heather Seidle; Safdar Jawaid; Weidong Zhou; Clint Smith; Robin D Couch
Journal:  PLoS One       Date:  2011-06-09       Impact factor: 3.240

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  28 in total

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2.  Metabolomics-Based Screening of the Malaria Box Reveals both Novel and Established Mechanisms of Action.

Authors:  Darren J Creek; Hwa H Chua; Simon A Cobbold; Brunda Nijagal; James I MacRae; Benjamin K Dickerman; Paul R Gilson; Stuart A Ralph; Malcolm J McConville
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3.  Probing the B- & C-rings of the antimalarial tetrahydro-β-carboline MMV008138 for steric and conformational constraints.

Authors:  Sha Ding; Maryam Ghavami; Joshua H Butler; Emilio F Merino; Carla Slebodnick; Maria B Cassera; Paul R Carlier
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4.  A high-throughput screening campaign to identify inhibitors of DXP reductoisomerase (IspC) and MEP cytidylyltransferase (IspD).

Authors:  Amanda Haymond; Tyrone Dowdy; Chinchu Johny; Claire Johnson; Haley Ball; Allyson Dailey; Brandon Schweibenz; Karen Villarroel; Richard Young; Clark J Mantooth; Trishal Patel; Jessica Bases; Cynthia S Dowd; Robin D Couch
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Review 5.  The apicoplast: now you see it, now you don't.

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6.  Synthesis and Evaluation of Fluoroalkyl Phosphonyl Analogues of 2- C-Methylerythritol Phosphate as Substrates and Inhibitors of IspD from Human Pathogens.

Authors:  David Bartee; Michael J Wheadon; Caren L Freel Meyers
Journal:  J Org Chem       Date:  2018-06-11       Impact factor: 4.354

7.  Deciphering structure, function and mechanism of Plasmodium IspD homologs from their evolutionary imprints.

Authors:  P Chellapandi; R Prathiviraj; A Prisilla
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8.  Metabolomic Profiling of the Malaria Box Reveals Antimalarial Target Pathways.

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9.  Biological Studies and Target Engagement of the 2- C-Methyl-d-Erythritol 4-Phosphate Cytidylyltransferase (IspD)-Targeting Antimalarial Agent (1 R,3 S)-MMV008138 and Analogs.

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10.  Validation of Putative Apicoplast-Targeting Drugs Using a Chemical Supplementation Assay in Cultured Human Malaria Parasites.

Authors:  Geoffrey Ian McFadden; Christopher Dean Goodman; Taher Uddin
Journal:  Antimicrob Agents Chemother       Date:  2017-12-21       Impact factor: 5.191

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