gms | German Medical Science

10th Malaria Meeting

Working party Malaria / Section Antiparasitic Chemotherapy of the Paul-Ehrlich-Society (PEG e.V.) in cooperation with the German Society for Tropical Medicine and International Health (DTG e.V.) and the German Society for Parasitology (DGP e.V.)

09.11. - 10.11.2012, Marburg an der Lahn

Deoxyhypusine hydrolase from Plasmodium vivax, the neglected human malaria parasite: molecular cloning, expression and functional activity

Meeting Abstract

  • V. Anyi - University of Duisburg-Essen, Medical Research Centre, Institute of Pharmacogenetics, Essen, Germany
  • M. Pink - University of Duisburg-Essen, Occupational Medicine, Essen, Germany
  • S. Schmitz-Spanke - University of Duisburg-Essen, Occupational Medicine, Essen, Germany
  • I. von Koschtizky - University of Duisburg-Essen, Medical Research Centre, Institute of Pharmacogenetics, Essen, Germany
  • K. H. Zhao - State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan, PR China
  • B. Langer - University of Duisburg-Essen, Medical Research Centre, Institute of Pharmacogenetics, Essen, Germany
  • A. Kaiser - University of Duisburg-Essen, Medical Research Centre, Institute of Pharmacogenetics, Essen, Germany

10th Malaria Meeting. Marburg, 09.-10.11.2012. Düsseldorf: German Medical Science GMS Publishing House; 2013. Doc12mal03

doi: 10.3205/12mal03, urn:nbn:de:0183-12mal037

Published: January 8, 2013

© 2013 Anyi et al.
This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by-nc-nd/3.0/deed.en). You are free: to Share – to copy, distribute and transmit the work, provided the original author and source are credited.


Outline

Text

Primaquine, a 4-aminoquinoline, is the only drug which cures the dormant hypnozoites of persistant liver stages from P. vivax. Increasing resistance needs the discovery of alternative pathways as drug targets to develop novel drug entities. Deoxyhypusine hydroxylase (DOHH) completes hypusine biosynthesis in eukaryotic initiation factor (eIF-5A) which is the only cellular protein known to contain the unusual amino acid hypusine. Modified EIF-5A is important for proliferation of the malaria parasite. Here, we present the first successful cloning and expression of DOHH from P. vivax causing tertiary malaria. The nucleic acid sequence of 1041bp encodes an open reading frame of 346 amino acids. Histidine tagged expression of P. vivax DOHH detected a protein of 39.01 kDa in E. coli. The DOHH protein from P. vivax shares significant amino acid identity to the simian orthologues from P. knowlesi and P. yoelii strain H. In contrast to P. falciparum only four E-Z-type HEAT-like repeats are present in P. vivax DOHH with different homology to phycocyanin lyase subunits from cyanobacteria and in proteins participating in energy metabolism of Archaea and Halobacteria. However, phycocyanin lyase activity is absent. The dohh gene is present as a single copy gene and transcribed throughout the whole erythrocytic cycle. Specific inhibition of recombinant P. vivax DOHH is possible by complexing the ferrous iron with zileuton, an inhibitor of mammalian 5-lipoxygenase (5-LOX). Ferrous iron in the active site of 5-LOX is coordinated by three conserved histidines and the carboxylate of isoleucine673. Zileuton inhibited the P. vivax DOHH protein 5.3 fold at a concentration of 100 nmol. By contrast, the human orthologue is only less inhibited suggesting a selective iron-complexing strategy for the parasitic enzyme.