Cargando…

Allelic Diversity of the Plasmodium falciparum Erythrocyte Membrane Protein 1 Entails Variant-Specific Red Cell Surface Epitopes

The clonally variant Plasmodium falciparum PfEMP1 adhesin is a virulence factor and a prime target of humoral immunity. It is encoded by a repertoire of functionally differentiated var genes, which display architectural diversity and allelic polymorphism. Their serological relationship is key to und...

Descripción completa

Detalles Bibliográficos
Autores principales: Vigan-Womas, Inès, Guillotte, Micheline, Juillerat, Alexandre, Vallieres, Cindy, Lewit-Bentley, Anita, Tall, Adama, Baril, Laurence, Bentley, Graham A., Mercereau-Puijalon, Odile
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3029348/
https://www.ncbi.nlm.nih.gov/pubmed/21298021
http://dx.doi.org/10.1371/journal.pone.0016544
_version_ 1782197225104867328
author Vigan-Womas, Inès
Guillotte, Micheline
Juillerat, Alexandre
Vallieres, Cindy
Lewit-Bentley, Anita
Tall, Adama
Baril, Laurence
Bentley, Graham A.
Mercereau-Puijalon, Odile
author_facet Vigan-Womas, Inès
Guillotte, Micheline
Juillerat, Alexandre
Vallieres, Cindy
Lewit-Bentley, Anita
Tall, Adama
Baril, Laurence
Bentley, Graham A.
Mercereau-Puijalon, Odile
author_sort Vigan-Womas, Inès
collection PubMed
description The clonally variant Plasmodium falciparum PfEMP1 adhesin is a virulence factor and a prime target of humoral immunity. It is encoded by a repertoire of functionally differentiated var genes, which display architectural diversity and allelic polymorphism. Their serological relationship is key to understanding the evolutionary constraints on this gene family and rational vaccine design. Here, we investigated the Palo Alto/VarO and IT4/R29 and 3D7/PF13_003 parasites lines. VarO and R29 form rosettes with uninfected erythrocytes, a phenotype associated with severe malaria. They express an allelic Cys2/group A NTS-DBL1α(1) PfEMP1 domain implicated in rosetting, whose 3D7 ortholog is encoded by PF13_0003. Using these three recombinant NTS-DBL1α(1) domains, we elicited antibodies in mice that were used to develop monovariant cultures by panning selection. The 3D7/PF13_0003 parasites formed rosettes, revealing a correlation between sequence identity and virulence phenotype. The antibodies cross-reacted with the allelic domains in ELISA but only minimally with the Cys4/group B/C PFL1955w NTS-DBL1α. By contrast, they were variant-specific in surface seroreactivity of the monovariant-infected red cells by FACS analysis and in rosette-disruption assays. Thus, while ELISA can differentiate serogroups, surface reactivity assays define the more restrictive serotypes. Irrespective of cumulated exposure to infection, antibodies acquired by humans living in a malaria-endemic area also displayed a variant-specific surface reactivity. Although seroprevalence exceeded 90% for each rosetting line, the kinetics of acquistion of surface-reactive antibodies differed in the younger age groups. These data indicate that humans acquire an antibody repertoire to non-overlapping serotypes within a serogroup, consistent with an antibody-driven diversification pressure at the population level. In addition, the data provide important information for vaccine design, as production of a vaccine targeting rosetting PfEMP1 adhesins will require engineering to induce variant-transcending responses or combining multiple serotypes to elicit a broad spectrum of immunity.
format Text
id pubmed-3029348
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-30293482011-02-04 Allelic Diversity of the Plasmodium falciparum Erythrocyte Membrane Protein 1 Entails Variant-Specific Red Cell Surface Epitopes Vigan-Womas, Inès Guillotte, Micheline Juillerat, Alexandre Vallieres, Cindy Lewit-Bentley, Anita Tall, Adama Baril, Laurence Bentley, Graham A. Mercereau-Puijalon, Odile PLoS One Research Article The clonally variant Plasmodium falciparum PfEMP1 adhesin is a virulence factor and a prime target of humoral immunity. It is encoded by a repertoire of functionally differentiated var genes, which display architectural diversity and allelic polymorphism. Their serological relationship is key to understanding the evolutionary constraints on this gene family and rational vaccine design. Here, we investigated the Palo Alto/VarO and IT4/R29 and 3D7/PF13_003 parasites lines. VarO and R29 form rosettes with uninfected erythrocytes, a phenotype associated with severe malaria. They express an allelic Cys2/group A NTS-DBL1α(1) PfEMP1 domain implicated in rosetting, whose 3D7 ortholog is encoded by PF13_0003. Using these three recombinant NTS-DBL1α(1) domains, we elicited antibodies in mice that were used to develop monovariant cultures by panning selection. The 3D7/PF13_0003 parasites formed rosettes, revealing a correlation between sequence identity and virulence phenotype. The antibodies cross-reacted with the allelic domains in ELISA but only minimally with the Cys4/group B/C PFL1955w NTS-DBL1α. By contrast, they were variant-specific in surface seroreactivity of the monovariant-infected red cells by FACS analysis and in rosette-disruption assays. Thus, while ELISA can differentiate serogroups, surface reactivity assays define the more restrictive serotypes. Irrespective of cumulated exposure to infection, antibodies acquired by humans living in a malaria-endemic area also displayed a variant-specific surface reactivity. Although seroprevalence exceeded 90% for each rosetting line, the kinetics of acquistion of surface-reactive antibodies differed in the younger age groups. These data indicate that humans acquire an antibody repertoire to non-overlapping serotypes within a serogroup, consistent with an antibody-driven diversification pressure at the population level. In addition, the data provide important information for vaccine design, as production of a vaccine targeting rosetting PfEMP1 adhesins will require engineering to induce variant-transcending responses or combining multiple serotypes to elicit a broad spectrum of immunity. Public Library of Science 2011-01-27 /pmc/articles/PMC3029348/ /pubmed/21298021 http://dx.doi.org/10.1371/journal.pone.0016544 Text en Vigan-Womas 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Vigan-Womas, Inès
Guillotte, Micheline
Juillerat, Alexandre
Vallieres, Cindy
Lewit-Bentley, Anita
Tall, Adama
Baril, Laurence
Bentley, Graham A.
Mercereau-Puijalon, Odile
Allelic Diversity of the Plasmodium falciparum Erythrocyte Membrane Protein 1 Entails Variant-Specific Red Cell Surface Epitopes
title Allelic Diversity of the Plasmodium falciparum Erythrocyte Membrane Protein 1 Entails Variant-Specific Red Cell Surface Epitopes
title_full Allelic Diversity of the Plasmodium falciparum Erythrocyte Membrane Protein 1 Entails Variant-Specific Red Cell Surface Epitopes
title_fullStr Allelic Diversity of the Plasmodium falciparum Erythrocyte Membrane Protein 1 Entails Variant-Specific Red Cell Surface Epitopes
title_full_unstemmed Allelic Diversity of the Plasmodium falciparum Erythrocyte Membrane Protein 1 Entails Variant-Specific Red Cell Surface Epitopes
title_short Allelic Diversity of the Plasmodium falciparum Erythrocyte Membrane Protein 1 Entails Variant-Specific Red Cell Surface Epitopes
title_sort allelic diversity of the plasmodium falciparum erythrocyte membrane protein 1 entails variant-specific red cell surface epitopes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3029348/
https://www.ncbi.nlm.nih.gov/pubmed/21298021
http://dx.doi.org/10.1371/journal.pone.0016544
work_keys_str_mv AT viganwomasines allelicdiversityoftheplasmodiumfalciparumerythrocytemembraneprotein1entailsvariantspecificredcellsurfaceepitopes
AT guillottemicheline allelicdiversityoftheplasmodiumfalciparumerythrocytemembraneprotein1entailsvariantspecificredcellsurfaceepitopes
AT juilleratalexandre allelicdiversityoftheplasmodiumfalciparumerythrocytemembraneprotein1entailsvariantspecificredcellsurfaceepitopes
AT vallierescindy allelicdiversityoftheplasmodiumfalciparumerythrocytemembraneprotein1entailsvariantspecificredcellsurfaceepitopes
AT lewitbentleyanita allelicdiversityoftheplasmodiumfalciparumerythrocytemembraneprotein1entailsvariantspecificredcellsurfaceepitopes
AT talladama allelicdiversityoftheplasmodiumfalciparumerythrocytemembraneprotein1entailsvariantspecificredcellsurfaceepitopes
AT barillaurence allelicdiversityoftheplasmodiumfalciparumerythrocytemembraneprotein1entailsvariantspecificredcellsurfaceepitopes
AT bentleygrahama allelicdiversityoftheplasmodiumfalciparumerythrocytemembraneprotein1entailsvariantspecificredcellsurfaceepitopes
AT mercereaupuijalonodile allelicdiversityoftheplasmodiumfalciparumerythrocytemembraneprotein1entailsvariantspecificredcellsurfaceepitopes