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Limited Polymorphism of the Kelch Propeller Domain in Plasmodium malariae and P. ovale Isolates from Thailand

Artemisinin resistance in Plasmodium falciparum, the agent of severe malaria, is currently a major obstacle to malaria control in Southeast Asia. A gene named “kelch13” has been associated with artemisinin resistance in P. falciparum. The orthologue of the kelch gene in P. vivax was identified and a...

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Autores principales: Nakeesathit, Supatchara, Saralamba, Naowarat, Pukrittayakamee, Sasithon, Dondorp, Arjen, Nosten, Francois, White, Nicholas J., Imwong, Mallika
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4914644/
https://www.ncbi.nlm.nih.gov/pubmed/27114275
http://dx.doi.org/10.1128/AAC.00138-16
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author Nakeesathit, Supatchara
Saralamba, Naowarat
Pukrittayakamee, Sasithon
Dondorp, Arjen
Nosten, Francois
White, Nicholas J.
Imwong, Mallika
author_facet Nakeesathit, Supatchara
Saralamba, Naowarat
Pukrittayakamee, Sasithon
Dondorp, Arjen
Nosten, Francois
White, Nicholas J.
Imwong, Mallika
author_sort Nakeesathit, Supatchara
collection PubMed
description Artemisinin resistance in Plasmodium falciparum, the agent of severe malaria, is currently a major obstacle to malaria control in Southeast Asia. A gene named “kelch13” has been associated with artemisinin resistance in P. falciparum. The orthologue of the kelch gene in P. vivax was identified and a small number of mutations were found in previous studies. The kelch orthologues in the other two human malaria parasites, P. malariae and P. ovale, have not yet been studied. Therefore, in this study, the orthologous kelch genes of P. malariae, P. ovale wallikeri, and P. ovale curtisi were isolated and analyzed for the first time. The homologies of the kelch genes of P. malariae and P. ovale were 84.8% and 82.7%, respectively, compared to the gene in P. falciparum. kelch polymorphisms were studied in 13 P. malariae and 5 P. ovale isolates from Thailand. There were 2 nonsynonymous mutations found in these samples. One mutation was P533L, which was found in 1 of 13 P. malariae isolates, and the other was K137R, found in 1 isolate of P. ovale wallikeri (n = 4). This result needs to be considered in the context of widespread artemisinin used within the region; their functional consequences for artemisinin sensitivity in P. malariae and P. ovale will need to be elucidated.
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spelling pubmed-49146442016-07-01 Limited Polymorphism of the Kelch Propeller Domain in Plasmodium malariae and P. ovale Isolates from Thailand Nakeesathit, Supatchara Saralamba, Naowarat Pukrittayakamee, Sasithon Dondorp, Arjen Nosten, Francois White, Nicholas J. Imwong, Mallika Antimicrob Agents Chemother Mechanisms of Resistance Artemisinin resistance in Plasmodium falciparum, the agent of severe malaria, is currently a major obstacle to malaria control in Southeast Asia. A gene named “kelch13” has been associated with artemisinin resistance in P. falciparum. The orthologue of the kelch gene in P. vivax was identified and a small number of mutations were found in previous studies. The kelch orthologues in the other two human malaria parasites, P. malariae and P. ovale, have not yet been studied. Therefore, in this study, the orthologous kelch genes of P. malariae, P. ovale wallikeri, and P. ovale curtisi were isolated and analyzed for the first time. The homologies of the kelch genes of P. malariae and P. ovale were 84.8% and 82.7%, respectively, compared to the gene in P. falciparum. kelch polymorphisms were studied in 13 P. malariae and 5 P. ovale isolates from Thailand. There were 2 nonsynonymous mutations found in these samples. One mutation was P533L, which was found in 1 of 13 P. malariae isolates, and the other was K137R, found in 1 isolate of P. ovale wallikeri (n = 4). This result needs to be considered in the context of widespread artemisinin used within the region; their functional consequences for artemisinin sensitivity in P. malariae and P. ovale will need to be elucidated. American Society for Microbiology 2016-06-20 /pmc/articles/PMC4914644/ /pubmed/27114275 http://dx.doi.org/10.1128/AAC.00138-16 Text en Copyright © 2016 Nakeesathit et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Mechanisms of Resistance
Nakeesathit, Supatchara
Saralamba, Naowarat
Pukrittayakamee, Sasithon
Dondorp, Arjen
Nosten, Francois
White, Nicholas J.
Imwong, Mallika
Limited Polymorphism of the Kelch Propeller Domain in Plasmodium malariae and P. ovale Isolates from Thailand
title Limited Polymorphism of the Kelch Propeller Domain in Plasmodium malariae and P. ovale Isolates from Thailand
title_full Limited Polymorphism of the Kelch Propeller Domain in Plasmodium malariae and P. ovale Isolates from Thailand
title_fullStr Limited Polymorphism of the Kelch Propeller Domain in Plasmodium malariae and P. ovale Isolates from Thailand
title_full_unstemmed Limited Polymorphism of the Kelch Propeller Domain in Plasmodium malariae and P. ovale Isolates from Thailand
title_short Limited Polymorphism of the Kelch Propeller Domain in Plasmodium malariae and P. ovale Isolates from Thailand
title_sort limited polymorphism of the kelch propeller domain in plasmodium malariae and p. ovale isolates from thailand
topic Mechanisms of Resistance
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4914644/
https://www.ncbi.nlm.nih.gov/pubmed/27114275
http://dx.doi.org/10.1128/AAC.00138-16
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