Cargando…
The Mu Subunit of Plasmodium falciparum Clathrin-Associated Adaptor Protein 2 Modulates In Vitro Parasite Response to Artemisinin and Quinine
The emergence of drug-resistant parasites is a serious threat faced by malaria control programs. Understanding the genetic basis of resistance is critical to the success of treatment and intervention strategies. A novel locus associated with antimalarial resistance, ap2-mu (encoding the mu chain of...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society for Microbiology
2015
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4394773/ https://www.ncbi.nlm.nih.gov/pubmed/25691625 http://dx.doi.org/10.1128/AAC.04067-14 |
_version_ | 1782366334737186816 |
---|---|
author | Henriques, Gisela van Schalkwyk, Donelly A. Burrow, Rebekah Warhurst, David C. Thompson, Eloise Baker, David A. Fidock, David A. Hallett, Rachel Flueck, Christian Sutherland, Colin J. |
author_facet | Henriques, Gisela van Schalkwyk, Donelly A. Burrow, Rebekah Warhurst, David C. Thompson, Eloise Baker, David A. Fidock, David A. Hallett, Rachel Flueck, Christian Sutherland, Colin J. |
author_sort | Henriques, Gisela |
collection | PubMed |
description | The emergence of drug-resistant parasites is a serious threat faced by malaria control programs. Understanding the genetic basis of resistance is critical to the success of treatment and intervention strategies. A novel locus associated with antimalarial resistance, ap2-mu (encoding the mu chain of the adaptor protein 2 [AP2] complex), was recently identified in studies on the rodent malaria parasite Plasmodium chabaudi (pcap2-mu). Furthermore, analysis in Kenyan malaria patients of polymorphisms in the Plasmodium falciparum ap2-mu homologue, pfap2-mu, found evidence that differences in the amino acid encoded by codon 160 are associated with enhanced parasite survival in vivo following combination treatments which included artemisinin derivatives. Here, we characterize the role of pfap2-mu in mediating the in vitro antimalarial drug response of P. falciparum by generating transgenic parasites constitutively expressing codon 160 encoding either the wild-type Ser (Ser160) or the Asn mutant (160Asn) form of pfap2-mu. Transgenic parasites carrying the pfap2-mu 160Asn allele were significantly less sensitive to dihydroartemisinin using a standard 48-h in vitro test, providing direct evidence of an altered parasite response to artemisinin. Our data also provide evidence that pfap2-mu variants can modulate parasite sensitivity to quinine. No evidence was found that pfap2-mu variants contribute to the slow-clearance phenotype exhibited by P. falciparum in Cambodian patients treated with artesunate monotherapy. These findings provide compelling evidence that pfap2-mu can modulate P. falciparum responses to multiple drugs. We propose that this gene should be evaluated further as a potential molecular marker of antimalarial resistance. |
format | Online Article Text |
id | pubmed-4394773 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | American Society for Microbiology |
record_format | MEDLINE/PubMed |
spelling | pubmed-43947732015-05-06 The Mu Subunit of Plasmodium falciparum Clathrin-Associated Adaptor Protein 2 Modulates In Vitro Parasite Response to Artemisinin and Quinine Henriques, Gisela van Schalkwyk, Donelly A. Burrow, Rebekah Warhurst, David C. Thompson, Eloise Baker, David A. Fidock, David A. Hallett, Rachel Flueck, Christian Sutherland, Colin J. Antimicrob Agents Chemother Mechanisms of Resistance The emergence of drug-resistant parasites is a serious threat faced by malaria control programs. Understanding the genetic basis of resistance is critical to the success of treatment and intervention strategies. A novel locus associated with antimalarial resistance, ap2-mu (encoding the mu chain of the adaptor protein 2 [AP2] complex), was recently identified in studies on the rodent malaria parasite Plasmodium chabaudi (pcap2-mu). Furthermore, analysis in Kenyan malaria patients of polymorphisms in the Plasmodium falciparum ap2-mu homologue, pfap2-mu, found evidence that differences in the amino acid encoded by codon 160 are associated with enhanced parasite survival in vivo following combination treatments which included artemisinin derivatives. Here, we characterize the role of pfap2-mu in mediating the in vitro antimalarial drug response of P. falciparum by generating transgenic parasites constitutively expressing codon 160 encoding either the wild-type Ser (Ser160) or the Asn mutant (160Asn) form of pfap2-mu. Transgenic parasites carrying the pfap2-mu 160Asn allele were significantly less sensitive to dihydroartemisinin using a standard 48-h in vitro test, providing direct evidence of an altered parasite response to artemisinin. Our data also provide evidence that pfap2-mu variants can modulate parasite sensitivity to quinine. No evidence was found that pfap2-mu variants contribute to the slow-clearance phenotype exhibited by P. falciparum in Cambodian patients treated with artesunate monotherapy. These findings provide compelling evidence that pfap2-mu can modulate P. falciparum responses to multiple drugs. We propose that this gene should be evaluated further as a potential molecular marker of antimalarial resistance. American Society for Microbiology 2015-04-10 2015-05 /pmc/articles/PMC4394773/ /pubmed/25691625 http://dx.doi.org/10.1128/AAC.04067-14 Text en Copyright © 2015, Henriques et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 3.0 Unported license (http://creativecommons.org/licenses/by/3.0/) . |
spellingShingle | Mechanisms of Resistance Henriques, Gisela van Schalkwyk, Donelly A. Burrow, Rebekah Warhurst, David C. Thompson, Eloise Baker, David A. Fidock, David A. Hallett, Rachel Flueck, Christian Sutherland, Colin J. The Mu Subunit of Plasmodium falciparum Clathrin-Associated Adaptor Protein 2 Modulates In Vitro Parasite Response to Artemisinin and Quinine |
title | The Mu Subunit of Plasmodium falciparum Clathrin-Associated Adaptor Protein 2 Modulates In Vitro Parasite Response to Artemisinin and Quinine |
title_full | The Mu Subunit of Plasmodium falciparum Clathrin-Associated Adaptor Protein 2 Modulates In Vitro Parasite Response to Artemisinin and Quinine |
title_fullStr | The Mu Subunit of Plasmodium falciparum Clathrin-Associated Adaptor Protein 2 Modulates In Vitro Parasite Response to Artemisinin and Quinine |
title_full_unstemmed | The Mu Subunit of Plasmodium falciparum Clathrin-Associated Adaptor Protein 2 Modulates In Vitro Parasite Response to Artemisinin and Quinine |
title_short | The Mu Subunit of Plasmodium falciparum Clathrin-Associated Adaptor Protein 2 Modulates In Vitro Parasite Response to Artemisinin and Quinine |
title_sort | mu subunit of plasmodium falciparum clathrin-associated adaptor protein 2 modulates in vitro parasite response to artemisinin and quinine |
topic | Mechanisms of Resistance |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4394773/ https://www.ncbi.nlm.nih.gov/pubmed/25691625 http://dx.doi.org/10.1128/AAC.04067-14 |
work_keys_str_mv | AT henriquesgisela themusubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT vanschalkwykdonellya themusubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT burrowrebekah themusubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT warhurstdavidc themusubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT thompsoneloise themusubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT bakerdavida themusubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT fidockdavida themusubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT hallettrachel themusubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT flueckchristian themusubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT sutherlandcolinj themusubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT henriquesgisela musubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT vanschalkwykdonellya musubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT burrowrebekah musubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT warhurstdavidc musubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT thompsoneloise musubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT bakerdavida musubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT fidockdavida musubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT hallettrachel musubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT flueckchristian musubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine AT sutherlandcolinj musubunitofplasmodiumfalciparumclathrinassociatedadaptorprotein2modulatesinvitroparasiteresponsetoartemisininandquinine |