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Emerging challenges in understanding trypanosome antigenic variation

Many pathogens evade host immunity by periodically changing the proteins they express on their surface — a phenomenon termed antigenic variation. An extreme form of antigenic variation, based around switching the composition of a variant surface glycoprotein (VSG) coat, is exhibited by the African t...

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Autores principales: McCulloch, Richard, Cobbold, Christina A., Figueiredo, Luisa, Jackson, Andrew, Morrison, Liam J., Mugnier, Monica R., Papavasiliou, Nina, Schnaufer, Achim, Matthews, Keith
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6162063/
https://www.ncbi.nlm.nih.gov/pubmed/30271884
http://dx.doi.org/10.1042/ETLS20170104
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author McCulloch, Richard
Cobbold, Christina A.
Figueiredo, Luisa
Jackson, Andrew
Morrison, Liam J.
Mugnier, Monica R.
Papavasiliou, Nina
Schnaufer, Achim
Matthews, Keith
author_facet McCulloch, Richard
Cobbold, Christina A.
Figueiredo, Luisa
Jackson, Andrew
Morrison, Liam J.
Mugnier, Monica R.
Papavasiliou, Nina
Schnaufer, Achim
Matthews, Keith
author_sort McCulloch, Richard
collection PubMed
description Many pathogens evade host immunity by periodically changing the proteins they express on their surface — a phenomenon termed antigenic variation. An extreme form of antigenic variation, based around switching the composition of a variant surface glycoprotein (VSG) coat, is exhibited by the African trypanosome Trypanosoma brucei, which causes human disease. The molecular details of VSG switching in T. brucei have been extensively studied over the last three decades, revealing in increasing detail the machinery and mechanisms by which VSG expression is controlled and altered. However, several key components of the models of T. brucei antigenic variation that have emerged have been challenged through recent discoveries. These discoveries include new appreciation of the importance of gene mosaics in generating huge levels of new VSG variants, the contributions of parasite development and body compartmentation in the host to the infection dynamics and, finally, potential differences in the strategies of antigenic variation and host infection used by the crucial livestock trypanosomes T. congolense and T. vivax. This review will discuss all these observations, which raise questions regarding how secure the existing models of trypanosome antigenic variation are. In addition, we will discuss the importance of continued mathematical modelling to understand the purpose of this widespread immune survival process.
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spelling pubmed-61620632018-09-28 Emerging challenges in understanding trypanosome antigenic variation McCulloch, Richard Cobbold, Christina A. Figueiredo, Luisa Jackson, Andrew Morrison, Liam J. Mugnier, Monica R. Papavasiliou, Nina Schnaufer, Achim Matthews, Keith Emerg Top Life Sci Review Articles Many pathogens evade host immunity by periodically changing the proteins they express on their surface — a phenomenon termed antigenic variation. An extreme form of antigenic variation, based around switching the composition of a variant surface glycoprotein (VSG) coat, is exhibited by the African trypanosome Trypanosoma brucei, which causes human disease. The molecular details of VSG switching in T. brucei have been extensively studied over the last three decades, revealing in increasing detail the machinery and mechanisms by which VSG expression is controlled and altered. However, several key components of the models of T. brucei antigenic variation that have emerged have been challenged through recent discoveries. These discoveries include new appreciation of the importance of gene mosaics in generating huge levels of new VSG variants, the contributions of parasite development and body compartmentation in the host to the infection dynamics and, finally, potential differences in the strategies of antigenic variation and host infection used by the crucial livestock trypanosomes T. congolense and T. vivax. This review will discuss all these observations, which raise questions regarding how secure the existing models of trypanosome antigenic variation are. In addition, we will discuss the importance of continued mathematical modelling to understand the purpose of this widespread immune survival process. Portland Press Ltd. 2017-12-22 2017-12-22 /pmc/articles/PMC6162063/ /pubmed/30271884 http://dx.doi.org/10.1042/ETLS20170104 Text en © 2017 The Author(s) https://creativecommons.org/licenses/by/4.0/ This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and the Royal Society of Biology and distributed under the Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Review Articles
McCulloch, Richard
Cobbold, Christina A.
Figueiredo, Luisa
Jackson, Andrew
Morrison, Liam J.
Mugnier, Monica R.
Papavasiliou, Nina
Schnaufer, Achim
Matthews, Keith
Emerging challenges in understanding trypanosome antigenic variation
title Emerging challenges in understanding trypanosome antigenic variation
title_full Emerging challenges in understanding trypanosome antigenic variation
title_fullStr Emerging challenges in understanding trypanosome antigenic variation
title_full_unstemmed Emerging challenges in understanding trypanosome antigenic variation
title_short Emerging challenges in understanding trypanosome antigenic variation
title_sort emerging challenges in understanding trypanosome antigenic variation
topic Review Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6162063/
https://www.ncbi.nlm.nih.gov/pubmed/30271884
http://dx.doi.org/10.1042/ETLS20170104
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