Genetic loci associated with delayed clearance of Plasmodium falciparum following artemisinin treatment in Southeast Asia
Author(s) -
Shan TakalaHarrison,
Taane G. Clark,
Christopher G. Jacob,
Michael P. Cummings,
Olivo Miotto,
Arjen M. Dondorp,
Mark M. Fukuda,
François Nosten,
Harald Noedl,
Mallika Imwong,
Delia Bethell,
Youry Se,
Chanthap Lon,
Stuart D. Tyner,
David Saunders,
Duong Socheat,
Frédéric Ariey,
Aung Pyae Phyo,
Peter Starzengrüber,
HansPeter Fuehrer,
Paul Swoboda,
Kasia Stepniewska,
Jennifer A. Flegg,
Cesar Arze,
Gustavo C. Cerqueira,
Joana C. Silva,
Stacy Ricklefs,
Stephen F. Porcella,
Robert M. Stephens,
Matthew Adams,
Leo J. Kenefic,
Susana Campino,
Sarah Auburn,
Bronwyn MacInnis,
Dominic Kwiatkowski,
Xinzhuan Su,
Nicholas J. White,
Pascal Ringwald,
Christopher V. Plowe
Publication year - 2012
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.1211205110
Subject(s) - artemisinin , biology , single nucleotide polymorphism , malaria , plasmodium falciparum , artesunate , genetics , snp , genome wide association study , genotype , genome , drug resistance , gene , immunology
The recent emergence of artemisinin-resistant Plasmodium falciparum malaria in western Cambodia could threaten prospects for malaria elimination. Identification of the genetic basis of resistance would provide tools for molecular surveillance, aiding efforts to contain resistance. Clinical trials of artesunate efficacy were conducted in Bangladesh, in northwestern Thailand near the Myanmar border, and at two sites in western Cambodia. Parasites collected from trial participants were genotyped at 8,079 single nucleotide polymorphisms (SNPs) using a P. falciparum-specific SNP array. Parasite genotypes were examined for signatures of recent positive selection and association with parasite clearance phenotypes to identify regions of the genome associated with artemisinin resistance. Four SNPs on chromosomes 10 (one), 13 (two), and 14 (one) were significantly associated with delayed parasite clearance. The two SNPs on chromosome 13 are in a region of the genome that appears to be under strong recent positive selection in Cambodia. The SNPs on chromosomes 10 and 13 lie in or near genes involved in postreplication repair, a DNA damage-tolerance pathway. Replication and validation studies are needed to refine the location of loci responsible for artemisinin resistance and to understand the mechanism behind it; however, two SNPs on chromosomes 10 and 13 may be useful markers of delayed parasite clearance in surveillance for artemisinin resistance in Southeast Asia.
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