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Published on: May 16, 2013
Pfcrt copy number amplification detected in a Plasmodium falciparum outbreak
Anjana Rai1, Chiyun Lee2,3, Hidayat Trimarsanto1
1Global and Tropical Health Division, Menzies School of Health Research and Charles Darwin University, Darwin, Northern Territory, Australia.
Abstract:
Antimalarial resistance is one of the greatest threats to malaria elimination. Following an outbreak of Plasmodium falciparum infection in Sabah Malaysia in 2019, 98 samples were sequenced to search for adaptations driving the outbreak. The genomic data revealed evidence of clonal expansion of a strain carrying multiple copies of the chloroquine resistance transporter gene (pfcrt) in 86 cases. A TaqMan qPCR assay was developed to quantify pfcrt copy number, confirming the in silico evidence of duplication. Whilst point mutations in pfcrt have been associated with resistance to chloroquine and other drugs, copy number amplification has not been widely explored as a resistance mechanism. We investigated the genetic architecture of the duplication, revealing a wildtype haplotype (3D7 reference-type with 76K variant) and a novel mutant (with 76T mutation). Application of the TaqMan assay in 43 P. falciparum cases from neighbouring Palawan Island, the Philippines, identified a further two cases with pfcrt duplication. Assessment of the global genomic data in the MalariaGEN Pf8 repository identified a further 86 cases, including 73 (85%) from West Africa with evidence of pfcrt duplication. Amongst 47 monoclonal MalariaGEN cases, majority (95%) comprised wild type and mutant variants at codon 76. Our study reveals a potential previously unconsidered antimalarial resistance mechanism for P. falciparum and provides an assay for surveillance in other populations.
Insights
Multiple copies of the chloroquine resistance transporter gene (pfcrt) were found in Plasmodium falciparum strains, indicating a new antimalarial resistance mechanism. This discovery aids in tracking drug resistance in malaria elimination efforts.
Area of Science:
- Genomics
- Molecular Biology
- Parasitology
Background:
- Antimalarial drug resistance poses a significant threat to malaria elimination globally.
- Previous research focused on point mutations in the pfcrt gene associated with chloroquine resistance.
Purpose of the Study:
- To investigate a potential novel antimalarial resistance mechanism involving gene copy number amplification.
- To develop and validate a diagnostic assay for quantifying pfcrt gene copy number.
Main Methods:
- Genomic sequencing of Plasmodium falciparum samples from an outbreak in Sabah, Malaysia.
- Development and application of a TaqMan quantitative PCR (qPCR) assay to determine pfcrt copy number.
- Analysis of global genomic data from the MalariaGEN Pf8 repository.
Main Results:
- Genomic analysis revealed clonal expansion of a Plasmodium falciparum strain with multiple copies of the pfcrt gene in 86 out of 98 outbreak samples.
- The TaqMan qPCR assay confirmed pfcrt gene duplication and identified both wildtype and novel mutant haplotypes.
- pfcrt duplication was detected in additional cases from the Philippines and a significant proportion of samples from West Africa.
Conclusions:
- Gene copy number amplification of pfcrt represents a previously underappreciated mechanism of antimalarial drug resistance.
- The developed TaqMan assay is a valuable tool for surveillance of this resistance mechanism in Plasmodium falciparum populations worldwide.
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