Artemisinin-resistant K13 mutations rewire Plasmodium falciparum’s intra-erythrocytic metabolic program to enhance survival

The emergence and spread of artemisinin resistance has compromised antimalarial efficacy. Here, Mok et al. apply quantitative transcriptomics, proteomics, and metabolomics to provide evidence that K13 mutations alter multiple aspects of the parasite’s intra-erythrocytic development to enhance surviv...

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Autores principales: Sachel Mok, Barbara H. Stokes, Nina F. Gnädig, Leila S. Ross, Tomas Yeo, Chanaki Amaratunga, Erik Allman, Lev Solyakov, Andrew R. Bottrill, Jaishree Tripathi, Rick M. Fairhurst, Manuel Llinás, Zbynek Bozdech, Andrew B. Tobin, David A. Fidock
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/bc2f468af6fd4c64bd1c2706fa3f4ce6
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spelling oai:doaj.org-article:bc2f468af6fd4c64bd1c2706fa3f4ce62021-12-02T13:51:03ZArtemisinin-resistant K13 mutations rewire Plasmodium falciparum’s intra-erythrocytic metabolic program to enhance survival10.1038/s41467-020-20805-w2041-1723https://doaj.org/article/bc2f468af6fd4c64bd1c2706fa3f4ce62021-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-20805-whttps://doaj.org/toc/2041-1723The emergence and spread of artemisinin resistance has compromised antimalarial efficacy. Here, Mok et al. apply quantitative transcriptomics, proteomics, and metabolomics to provide evidence that K13 mutations alter multiple aspects of the parasite’s intra-erythrocytic development to enhance survival following artemisinin treatment.Sachel MokBarbara H. StokesNina F. GnädigLeila S. RossTomas YeoChanaki AmaratungaErik AllmanLev SolyakovAndrew R. BottrillJaishree TripathiRick M. FairhurstManuel LlinásZbynek BozdechAndrew B. TobinDavid A. FidockNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-15 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Sachel Mok
Barbara H. Stokes
Nina F. Gnädig
Leila S. Ross
Tomas Yeo
Chanaki Amaratunga
Erik Allman
Lev Solyakov
Andrew R. Bottrill
Jaishree Tripathi
Rick M. Fairhurst
Manuel Llinás
Zbynek Bozdech
Andrew B. Tobin
David A. Fidock
Artemisinin-resistant K13 mutations rewire Plasmodium falciparum’s intra-erythrocytic metabolic program to enhance survival
description The emergence and spread of artemisinin resistance has compromised antimalarial efficacy. Here, Mok et al. apply quantitative transcriptomics, proteomics, and metabolomics to provide evidence that K13 mutations alter multiple aspects of the parasite’s intra-erythrocytic development to enhance survival following artemisinin treatment.
format article
author Sachel Mok
Barbara H. Stokes
Nina F. Gnädig
Leila S. Ross
Tomas Yeo
Chanaki Amaratunga
Erik Allman
Lev Solyakov
Andrew R. Bottrill
Jaishree Tripathi
Rick M. Fairhurst
Manuel Llinás
Zbynek Bozdech
Andrew B. Tobin
David A. Fidock
author_facet Sachel Mok
Barbara H. Stokes
Nina F. Gnädig
Leila S. Ross
Tomas Yeo
Chanaki Amaratunga
Erik Allman
Lev Solyakov
Andrew R. Bottrill
Jaishree Tripathi
Rick M. Fairhurst
Manuel Llinás
Zbynek Bozdech
Andrew B. Tobin
David A. Fidock
author_sort Sachel Mok
title Artemisinin-resistant K13 mutations rewire Plasmodium falciparum’s intra-erythrocytic metabolic program to enhance survival
title_short Artemisinin-resistant K13 mutations rewire Plasmodium falciparum’s intra-erythrocytic metabolic program to enhance survival
title_full Artemisinin-resistant K13 mutations rewire Plasmodium falciparum’s intra-erythrocytic metabolic program to enhance survival
title_fullStr Artemisinin-resistant K13 mutations rewire Plasmodium falciparum’s intra-erythrocytic metabolic program to enhance survival
title_full_unstemmed Artemisinin-resistant K13 mutations rewire Plasmodium falciparum’s intra-erythrocytic metabolic program to enhance survival
title_sort artemisinin-resistant k13 mutations rewire plasmodium falciparum’s intra-erythrocytic metabolic program to enhance survival
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/bc2f468af6fd4c64bd1c2706fa3f4ce6
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