Gene encoding a deubiquitinating enzyme is mutated in artesunate‐ and chloroquine‐resistant rodent malaria parasites§
Open Access
- 16 June 2007
- journal article
- Published by Wiley in Molecular Microbiology
- Vol. 65 (1) , 27-40
- https://doi.org/10.1111/j.1365-2958.2007.05753.x
Abstract
Artemisinin- and artesunate-resistant Plasmodium chabaudi mutants, AS-ART and AS-ATN, were previously selected from chloroquine-resistant clones AS-30CQ and AS-15CQ respectively. Now, a genetic cross between AS-ART and the artemisinin-sensitive clone AJ has been analysed by Linkage Group Selection. A genetic linkage group on chromosome 2 was selected under artemisinin treatment. Within this locus, we identified two different mutations in a gene encoding a deubiquitinating enzyme. A distinct mutation occurred in each of the clones AS-30CQ and AS-ATN, relative to their respective progenitors in the AS lineage. The mutations occurred independently in different clones under drug selection with chloroquine (high concentration) or artesunate. Each mutation maps to a critical residue in a homologous human deubiquitinating protein structure. Although one mutation could theoretically account for the resistance of AS-ATN to artemisinin derivates, the other cannot account solely for the resistance of AS-ART, relative to the responses of its sensitive progenitor AS-30CQ. Two lines of Plasmodium falciparum with decreased susceptibility to artemisinin were also selected. Their drug-response phenotype was not genetically stable. No mutations in the UBP-1 gene encoding the P. falciparum orthologue of the deubiquitinating enzyme were observed. The possible significance of these mutations in parasite responses to chloroquine or artemisinin is discussed.Keywords
This publication has 52 references indexed in Scilit:
- Linkage Group Selection – A fast approach to the genetic analysis of malaria parasitesInternational Journal for Parasitology, 2007
- Re-evaluation of how artemisinins work in light of emerging evidence of in vitro resistanceTrends in Molecular Medicine, 2006
- A Plasmodium Whole-Genome Synteny Map: Indels and Synteny Breakpoints as Foci for Species-Specific GenesPLoS Pathogens, 2005
- Resistance of Plasmodium falciparum field isolates to in-vitro artemether and point mutations of the SERCA-type PfATPase6The Lancet, 2005
- Yeast Model Uncovers Dual Roles of Mitochondria in the Action of ArtemisininPLoS Genetics, 2005
- Redox proteomics analysis of oxidatively modified proteins in G93A-SOD1 transgenic mice—a model of familial amyotrophic lateral sclerosisFree Radical Biology & Medicine, 2005
- Coot: model-building tools for molecular graphicsActa Crystallographica Section D-Biological Crystallography, 2004
- Regulation of the Stability of P-Glycoprotein by UbiquitinationMolecular Pharmacology, 2004
- Artemisinins target the SERCA of Plasmodium falciparumNature, 2003
- Crystal Structure of a UBP-Family Deubiquitinating Enzyme in Isolation and in Complex with Ubiquitin AldehydeCell, 2002