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The exception that proves the rule: Virulence gene expression at the onset of Plasmodium falciparum blood stage infections

Controlled human malaria infections (CHMI) are a valuable tool to study parasite gene expression in vivo under defined conditions. In previous studies, virulence gene expression was analyzed in samples from volunteers infected with the Plasmodium falciparum (Pf) NF54 isolate, which is of African ori...

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Autores principales: Wichers-Misterek, Jan Stephan, Krumkamp, Ralf, Held, Jana, von Thien, Heidrun, Wittmann, Irene, Höppner, Yannick Daniel, Ruge, Julia M., Moser, Kara, Dara, Antoine, Strauss, Jan, Esen, Meral, Fendel, Rolf, Sulyok, Zita, Jeninga, Myriam D., Kremsner, Peter G., Sim, B. Kim Lee, Hoffman, Stephen L., Duffy, Michael F., Otto, Thomas D., Gilberger, Tim-Wolf, Silva, Joana C., Mordmüller, Benjamin, Petter, Michaela, Bachmann, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10337978/
https://www.ncbi.nlm.nih.gov/pubmed/37384799
http://dx.doi.org/10.1371/journal.ppat.1011468
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author Wichers-Misterek, Jan Stephan
Krumkamp, Ralf
Held, Jana
von Thien, Heidrun
Wittmann, Irene
Höppner, Yannick Daniel
Ruge, Julia M.
Moser, Kara
Dara, Antoine
Strauss, Jan
Esen, Meral
Fendel, Rolf
Sulyok, Zita
Jeninga, Myriam D.
Kremsner, Peter G.
Sim, B. Kim Lee
Hoffman, Stephen L.
Duffy, Michael F.
Otto, Thomas D.
Gilberger, Tim-Wolf
Silva, Joana C.
Mordmüller, Benjamin
Petter, Michaela
Bachmann, Anna
author_facet Wichers-Misterek, Jan Stephan
Krumkamp, Ralf
Held, Jana
von Thien, Heidrun
Wittmann, Irene
Höppner, Yannick Daniel
Ruge, Julia M.
Moser, Kara
Dara, Antoine
Strauss, Jan
Esen, Meral
Fendel, Rolf
Sulyok, Zita
Jeninga, Myriam D.
Kremsner, Peter G.
Sim, B. Kim Lee
Hoffman, Stephen L.
Duffy, Michael F.
Otto, Thomas D.
Gilberger, Tim-Wolf
Silva, Joana C.
Mordmüller, Benjamin
Petter, Michaela
Bachmann, Anna
author_sort Wichers-Misterek, Jan Stephan
collection PubMed
description Controlled human malaria infections (CHMI) are a valuable tool to study parasite gene expression in vivo under defined conditions. In previous studies, virulence gene expression was analyzed in samples from volunteers infected with the Plasmodium falciparum (Pf) NF54 isolate, which is of African origin. Here, we provide an in-depth investigation of parasite virulence gene expression in malaria-naïve European volunteers undergoing CHMI with the genetically distinct Pf 7G8 clone, originating in Brazil. Differential expression of var genes, encoding major virulence factors of Pf, PfEMP1s, was assessed in ex vivo parasite samples as well as in parasites from the in vitro cell bank culture that was used to generate the sporozoites (SPZ) for CHMI (Sanaria PfSPZ Challenge (7G8)). We report broad activation of mainly B-type subtelomeric located var genes at the onset of a 7G8 blood stage infection in naïve volunteers, mirroring the NF54 expression study and suggesting that the expression of virulence-associated genes is generally reset during transmission from the mosquito to the human host. However, in 7G8 parasites, we additionally detected a continuously expressed single C-type variant, Pf7G8_040025600, that was most highly expressed in both pre-mosquito cell bank and volunteer samples, suggesting that 7G8, unlike NF54, maintains expression of some previously expressed var variants during transmission. This suggests that in a new host, the parasite may preferentially express the variants that previously allowed successful infection and transmission. Trial registration: ClinicalTrials.gov - NCT02704533; 2018-004523-36
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spelling pubmed-103379782023-07-13 The exception that proves the rule: Virulence gene expression at the onset of Plasmodium falciparum blood stage infections Wichers-Misterek, Jan Stephan Krumkamp, Ralf Held, Jana von Thien, Heidrun Wittmann, Irene Höppner, Yannick Daniel Ruge, Julia M. Moser, Kara Dara, Antoine Strauss, Jan Esen, Meral Fendel, Rolf Sulyok, Zita Jeninga, Myriam D. Kremsner, Peter G. Sim, B. Kim Lee Hoffman, Stephen L. Duffy, Michael F. Otto, Thomas D. Gilberger, Tim-Wolf Silva, Joana C. Mordmüller, Benjamin Petter, Michaela Bachmann, Anna PLoS Pathog Research Article Controlled human malaria infections (CHMI) are a valuable tool to study parasite gene expression in vivo under defined conditions. In previous studies, virulence gene expression was analyzed in samples from volunteers infected with the Plasmodium falciparum (Pf) NF54 isolate, which is of African origin. Here, we provide an in-depth investigation of parasite virulence gene expression in malaria-naïve European volunteers undergoing CHMI with the genetically distinct Pf 7G8 clone, originating in Brazil. Differential expression of var genes, encoding major virulence factors of Pf, PfEMP1s, was assessed in ex vivo parasite samples as well as in parasites from the in vitro cell bank culture that was used to generate the sporozoites (SPZ) for CHMI (Sanaria PfSPZ Challenge (7G8)). We report broad activation of mainly B-type subtelomeric located var genes at the onset of a 7G8 blood stage infection in naïve volunteers, mirroring the NF54 expression study and suggesting that the expression of virulence-associated genes is generally reset during transmission from the mosquito to the human host. However, in 7G8 parasites, we additionally detected a continuously expressed single C-type variant, Pf7G8_040025600, that was most highly expressed in both pre-mosquito cell bank and volunteer samples, suggesting that 7G8, unlike NF54, maintains expression of some previously expressed var variants during transmission. This suggests that in a new host, the parasite may preferentially express the variants that previously allowed successful infection and transmission. Trial registration: ClinicalTrials.gov - NCT02704533; 2018-004523-36 Public Library of Science 2023-06-29 /pmc/articles/PMC10337978/ /pubmed/37384799 http://dx.doi.org/10.1371/journal.ppat.1011468 Text en © 2023 Wichers-Misterek et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Wichers-Misterek, Jan Stephan
Krumkamp, Ralf
Held, Jana
von Thien, Heidrun
Wittmann, Irene
Höppner, Yannick Daniel
Ruge, Julia M.
Moser, Kara
Dara, Antoine
Strauss, Jan
Esen, Meral
Fendel, Rolf
Sulyok, Zita
Jeninga, Myriam D.
Kremsner, Peter G.
Sim, B. Kim Lee
Hoffman, Stephen L.
Duffy, Michael F.
Otto, Thomas D.
Gilberger, Tim-Wolf
Silva, Joana C.
Mordmüller, Benjamin
Petter, Michaela
Bachmann, Anna
The exception that proves the rule: Virulence gene expression at the onset of Plasmodium falciparum blood stage infections
title The exception that proves the rule: Virulence gene expression at the onset of Plasmodium falciparum blood stage infections
title_full The exception that proves the rule: Virulence gene expression at the onset of Plasmodium falciparum blood stage infections
title_fullStr The exception that proves the rule: Virulence gene expression at the onset of Plasmodium falciparum blood stage infections
title_full_unstemmed The exception that proves the rule: Virulence gene expression at the onset of Plasmodium falciparum blood stage infections
title_short The exception that proves the rule: Virulence gene expression at the onset of Plasmodium falciparum blood stage infections
title_sort exception that proves the rule: virulence gene expression at the onset of plasmodium falciparum blood stage infections
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10337978/
https://www.ncbi.nlm.nih.gov/pubmed/37384799
http://dx.doi.org/10.1371/journal.ppat.1011468
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