A Worldwide Map of<i>Plasmodium falciparum</i>K13-Propeller Polymorphisms

Didier Ménard(The Stables), Nimol Khim(The Stables), Johann Beghain(The Stables), Ayôla Akim Adégnika(The Stables), Mohammad Shafiul Alam(The Stables), Olukemi K. Amodu(The Stables), Ghulam Rahim-Awab(The Stables), Céline Barnadas(The Stables), Antoine Berry(The Stables), Yap Boum(The Stables), Maria Dorina Bustos(The Stables), Jun Cao(The Stables), Jun-Hu Chen(The Stables), Louis Collet(The Stables), Liwang Cui(The Stables), Garib-Das Thakur(The Stables), Alioune Dièye(The Stables), Djibrine Djallé(The Stables), Monique A. Dorkenoo(The Stables), Carole E. Eboumbou-Moukoko(The Stables), Fe-Esperanza-Caridad J. Espino(The Stables), Thierry Fandeur(The Stables), Maria-Fatima Ferreira-da-Cruz(The Stables), Abebe A. Fola(The Stables), Hans‐Peter Fuehrer(The Stables), Abdillahi Mohamed Hassan(The Stables), Sócrates Herrera(The Stables), Bouasy Hongvanthong(The Stables), Sandrine Houzé(The Stables), Maman Laminou Ibrahim(The Stables), Mohammad Jahirul-Karim(The Stables), Lubin Jiang(The Stables), Shigeyuki Kano(The Stables), Wasif Ali-Khan(The Stables), Maniphone Khanthavong(The Stables), Peter G. Kremsner(The Stables), Marcus Lacerda(The Stables), Rithea Leang(The Stables), Mindy Leelawong(The Stables), Li Mei(The Stables), Khin Lin(The Stables), Jean-Baptiste Mazarati(The Stables), Sandie Ménard(The Stables), Isabelle Morlais(The Stables), Hypolite Muhindo Mavoko(The Stables), L. Musset(The Stables), Kesara Na‐Bangchang(The Stables), Michael Nambozi(The Stables), Karamoko Niaré(The Stables), Harald Noedl(The Stables), Jean‐Bosco Ouédraogo(The Stables), Dylan R. Pillai(The Stables), Bruno Pradines(The Stables), Bui Quang-Phuc(The Stables), Michael Ramharter(The Stables), Milijaona Randrianarivelojosia(The Stables), Jetsumon Sattabongkot(The Stables), Abdiqani Sheikh-Omar(The Stables), Kigbafori D. Silué(The Stables), Sodiomon B. Sirima(The Stables), Colin J. Sutherland(The Stables), Din Syafruddin(The Stables), Rachida Tahar(The Stables), Lin-Hua Tang(The Stables), Offianan André Touré(The Stables), Patrick Tshibangu-wa-Tshibangu(The Stables), Inès Vigan-Womas(The Stables), Marian Warsame(The Stables), Lyndes Wini(The Stables), Sedigheh Zakeri(The Stables), Saorin Kim(The Stables), Rotha Eam(The Stables), Laura Berne(The Stables), Chanra Khean(The Stables), Sophy Chy(The Stables), Malen Ken(The Stables), Kaknika Loch(The Stables), Lydie Canier(The Stables), Valentine Duru(The Stables), Eric Legrand(The Stables), Jean-Christophe Barale(The Stables), Barbara H. Stokes(The Stables), Judith Straimer(The Stables), Benoît Witkowski(The Stables), David A. Fidock(The Stables), Christophe Rogier(The Stables), Pascal Ringwald(The Stables), Frédéric Ariey(The Stables), Odile Mercereau‐Puijalon(The Stables)
New England Journal of Medicine
June 23, 2016
Cited by 571Open Access
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Abstract

BACKGROUND: Recent gains in reducing the global burden of malaria are threatened by the emergence of Plasmodium falciparum resistance to artemisinins. The discovery that mutations in portions of a P. falciparum gene encoding kelch (K13)-propeller domains are the major determinant of resistance has provided opportunities for monitoring such resistance on a global scale. METHODS: We analyzed the K13-propeller sequence polymorphism in 14,037 samples collected in 59 countries in which malaria is endemic. Most of the samples (84.5%) were obtained from patients who were treated at sentinel sites used for nationwide surveillance of antimalarial resistance. We evaluated the emergence and dissemination of mutations by haplotyping neighboring loci. RESULTS: We identified 108 nonsynonymous K13 mutations, which showed marked geographic disparity in their frequency and distribution. In Asia, 36.5% of the K13 mutations were distributed within two areas--one in Cambodia, Vietnam, and Laos and the other in western Thailand, Myanmar, and China--with no overlap. In Africa, we observed a broad array of rare nonsynonymous mutations that were not associated with delayed parasite clearance. The gene-edited Dd2 transgenic line with the A578S mutation, which expresses the most frequently observed African allele, was found to be susceptible to artemisinin in vitro on a ring-stage survival assay. CONCLUSIONS: No evidence of artemisinin resistance was found outside Southeast Asia and China, where resistance-associated K13 mutations were confined. The common African A578S allele was not associated with clinical or in vitro resistance to artemisinin, and many African mutations appear to be neutral. (Funded by Institut Pasteur Paris and others.).


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