Cargando…

Artemisinin resistance-associated markers in Plasmodium falciparum parasites from the China-Myanmar border: predicted structural stability of K13 propeller variants detected in a low-prevalence area

BACKGROUND: Malaria reduction and future elimination in China is made more difficult by the importation of cases from neighboring endemic countries, particularly Myanmar, Laos, and Vietnam, and increased travel to Africa by Chinese nationals. The increasing prevalence of artemisinin resistant parasi...

Descripción completa

Detalles Bibliográficos
Autores principales: He, Yan, Campino, Susana, Diez Benavente, Ernest, Warhurst, David C., Beshir, Khalid B., Lubis, Inke, Gomes, Ana Rita, Feng, Jun, Jiazhi, Wang, Sun, Xiaodong, Huang, Fang, Tang, Lin-hua, Sutherland, Colin J., Clark, Taane G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6422288/
https://www.ncbi.nlm.nih.gov/pubmed/30883571
http://dx.doi.org/10.1371/journal.pone.0213686
_version_ 1783404368617275392
author He, Yan
Campino, Susana
Diez Benavente, Ernest
Warhurst, David C.
Beshir, Khalid B.
Lubis, Inke
Gomes, Ana Rita
Feng, Jun
Jiazhi, Wang
Sun, Xiaodong
Huang, Fang
Tang, Lin-hua
Sutherland, Colin J.
Clark, Taane G.
author_facet He, Yan
Campino, Susana
Diez Benavente, Ernest
Warhurst, David C.
Beshir, Khalid B.
Lubis, Inke
Gomes, Ana Rita
Feng, Jun
Jiazhi, Wang
Sun, Xiaodong
Huang, Fang
Tang, Lin-hua
Sutherland, Colin J.
Clark, Taane G.
author_sort He, Yan
collection PubMed
description BACKGROUND: Malaria reduction and future elimination in China is made more difficult by the importation of cases from neighboring endemic countries, particularly Myanmar, Laos, and Vietnam, and increased travel to Africa by Chinese nationals. The increasing prevalence of artemisinin resistant parasites across Southeast Asia highlights the importance of monitoring the parasite importation into China. Artemisinin resistance in the Mekong region is associated with variants of genes encoding the K13 kelch domain protein (pf13k), found in specific genetic backgrounds, including certain alleles of genes encoding the chloroquine resistance transporter (pfcrt) and multidrug resistance transporter PgH1 (pfmdr1). METHODS: In this study we investigated the prevalence of drug resistance markers in 72 P. falciparum samples from uncomplicated malaria infections in Tengchong and Yingjiang, counties on the Yunnan-Myanmar border. Variants of pf13k, pfcrt and pfmdr1 are described. RESULTS: Almost all parasites harboured chloroquine-resistant alleles of pfcrt, whereas pfmdr1 was more diverse. Major mutations in the K13 propeller domain associated with artemisinin resistance in the Mekong region (C580Y, R539T and Y493H) were absent, but F446I and two previously undescribed mutations (V603E and V454I) were identified. Protein structural modelling was carried out in silico on each of these K13 variants, based on recently published crystal structures for the K13 propeller domain. Whereas F446I was predicted to elicit a moderate destabilisation of the propeller structure, the V603E substitution is likely to lead to relatively high protein instability. We plotted these stability estimates, and those for all previously described variants, against published values for in vivo parasitaemia half-life, and found that quadratic regression generates a useful predictive algorithm. CONCLUSION: This study provides a baseline of P. falciparum resistance-associated mutations prevalent at the China-Myanmar border. We also show that protein modelling can be used to generate testable predictions as to the impact of pfk13 mutations on in vivo (and potentially in vitro) artemisinin susceptibility.
format Online
Article
Text
id pubmed-6422288
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-64222882019-04-02 Artemisinin resistance-associated markers in Plasmodium falciparum parasites from the China-Myanmar border: predicted structural stability of K13 propeller variants detected in a low-prevalence area He, Yan Campino, Susana Diez Benavente, Ernest Warhurst, David C. Beshir, Khalid B. Lubis, Inke Gomes, Ana Rita Feng, Jun Jiazhi, Wang Sun, Xiaodong Huang, Fang Tang, Lin-hua Sutherland, Colin J. Clark, Taane G. PLoS One Research Article BACKGROUND: Malaria reduction and future elimination in China is made more difficult by the importation of cases from neighboring endemic countries, particularly Myanmar, Laos, and Vietnam, and increased travel to Africa by Chinese nationals. The increasing prevalence of artemisinin resistant parasites across Southeast Asia highlights the importance of monitoring the parasite importation into China. Artemisinin resistance in the Mekong region is associated with variants of genes encoding the K13 kelch domain protein (pf13k), found in specific genetic backgrounds, including certain alleles of genes encoding the chloroquine resistance transporter (pfcrt) and multidrug resistance transporter PgH1 (pfmdr1). METHODS: In this study we investigated the prevalence of drug resistance markers in 72 P. falciparum samples from uncomplicated malaria infections in Tengchong and Yingjiang, counties on the Yunnan-Myanmar border. Variants of pf13k, pfcrt and pfmdr1 are described. RESULTS: Almost all parasites harboured chloroquine-resistant alleles of pfcrt, whereas pfmdr1 was more diverse. Major mutations in the K13 propeller domain associated with artemisinin resistance in the Mekong region (C580Y, R539T and Y493H) were absent, but F446I and two previously undescribed mutations (V603E and V454I) were identified. Protein structural modelling was carried out in silico on each of these K13 variants, based on recently published crystal structures for the K13 propeller domain. Whereas F446I was predicted to elicit a moderate destabilisation of the propeller structure, the V603E substitution is likely to lead to relatively high protein instability. We plotted these stability estimates, and those for all previously described variants, against published values for in vivo parasitaemia half-life, and found that quadratic regression generates a useful predictive algorithm. CONCLUSION: This study provides a baseline of P. falciparum resistance-associated mutations prevalent at the China-Myanmar border. We also show that protein modelling can be used to generate testable predictions as to the impact of pfk13 mutations on in vivo (and potentially in vitro) artemisinin susceptibility. Public Library of Science 2019-03-18 /pmc/articles/PMC6422288/ /pubmed/30883571 http://dx.doi.org/10.1371/journal.pone.0213686 Text en © 2019 He et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
He, Yan
Campino, Susana
Diez Benavente, Ernest
Warhurst, David C.
Beshir, Khalid B.
Lubis, Inke
Gomes, Ana Rita
Feng, Jun
Jiazhi, Wang
Sun, Xiaodong
Huang, Fang
Tang, Lin-hua
Sutherland, Colin J.
Clark, Taane G.
Artemisinin resistance-associated markers in Plasmodium falciparum parasites from the China-Myanmar border: predicted structural stability of K13 propeller variants detected in a low-prevalence area
title Artemisinin resistance-associated markers in Plasmodium falciparum parasites from the China-Myanmar border: predicted structural stability of K13 propeller variants detected in a low-prevalence area
title_full Artemisinin resistance-associated markers in Plasmodium falciparum parasites from the China-Myanmar border: predicted structural stability of K13 propeller variants detected in a low-prevalence area
title_fullStr Artemisinin resistance-associated markers in Plasmodium falciparum parasites from the China-Myanmar border: predicted structural stability of K13 propeller variants detected in a low-prevalence area
title_full_unstemmed Artemisinin resistance-associated markers in Plasmodium falciparum parasites from the China-Myanmar border: predicted structural stability of K13 propeller variants detected in a low-prevalence area
title_short Artemisinin resistance-associated markers in Plasmodium falciparum parasites from the China-Myanmar border: predicted structural stability of K13 propeller variants detected in a low-prevalence area
title_sort artemisinin resistance-associated markers in plasmodium falciparum parasites from the china-myanmar border: predicted structural stability of k13 propeller variants detected in a low-prevalence area
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6422288/
https://www.ncbi.nlm.nih.gov/pubmed/30883571
http://dx.doi.org/10.1371/journal.pone.0213686
work_keys_str_mv AT heyan artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea
AT campinosusana artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea
AT diezbenaventeernest artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea
AT warhurstdavidc artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea
AT beshirkhalidb artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea
AT lubisinke artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea
AT gomesanarita artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea
AT fengjun artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea
AT jiazhiwang artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea
AT sunxiaodong artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea
AT huangfang artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea
AT tanglinhua artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea
AT sutherlandcolinj artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea
AT clarktaaneg artemisininresistanceassociatedmarkersinplasmodiumfalciparumparasitesfromthechinamyanmarborderpredictedstructuralstabilityofk13propellervariantsdetectedinalowprevalencearea