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Known Allergen Structures Predict Schistosoma mansoni IgE-Binding Antigens in Human Infection

The IgE response has been associated with both allergic reactions and immunity to metazoan parasites. Recently, we hypothesized that all environmental allergens bear structural homology to IgE-binding antigens from metazoan parasites and that this homology defines the relatively small number of prot...

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Autores principales: Farnell, Edward J., Tyagi, Nidhi, Ryan, Stephanie, Chalmers, Iain W., Pinot de Moira, Angela, Jones, Frances M., Wawrzyniak, Jakub, Fitzsimmons, Colin M., Tukahebwa, Edridah M., Furnham, Nicholas, Maizels, Rick M., Dunne, David W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4315118/
https://www.ncbi.nlm.nih.gov/pubmed/25691884
http://dx.doi.org/10.3389/fimmu.2015.00026
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author Farnell, Edward J.
Tyagi, Nidhi
Ryan, Stephanie
Chalmers, Iain W.
Pinot de Moira, Angela
Jones, Frances M.
Wawrzyniak, Jakub
Fitzsimmons, Colin M.
Tukahebwa, Edridah M.
Furnham, Nicholas
Maizels, Rick M.
Dunne, David W.
author_facet Farnell, Edward J.
Tyagi, Nidhi
Ryan, Stephanie
Chalmers, Iain W.
Pinot de Moira, Angela
Jones, Frances M.
Wawrzyniak, Jakub
Fitzsimmons, Colin M.
Tukahebwa, Edridah M.
Furnham, Nicholas
Maizels, Rick M.
Dunne, David W.
author_sort Farnell, Edward J.
collection PubMed
description The IgE response has been associated with both allergic reactions and immunity to metazoan parasites. Recently, we hypothesized that all environmental allergens bear structural homology to IgE-binding antigens from metazoan parasites and that this homology defines the relatively small number of protein families containing allergenic targets. In this study, known allergen structures (Pfam domains) from major environmental allergen families were used to predict allergen-like (SmProfilin, SmVAL-6, SmLipocalin, SmHSP20, Sm triosephosphate isomerase, SmThioredoxin, Sm superoxide dismutase, SmCyclophilin, and Sm phosphoglycerate kinase) and non-allergen-like [Sm dynein light chain (SmDLC), SmAldolase SmAK, SmUbiquitin, and Sm14-3-3] proteins in Schistosoma mansoni. Recombinant antigens were produced in Escherichia coli and IgG1, IgG4, and IgE responses against them measured in a cohort of people (n = 222) infected with S. mansoni. All allergen-like antigens were targeted by IgE responses in infected subjects, whilst IgE responses to the non-allergen-like antigens, SmAK, SmUbiquitin, and Sm14-3-3 were essentially absent being of both low prevalence and magnitude. Two new IgE-binding Pfam domain families, not previously described in allergen family databases, were also found, with prevalent IgE responses against SmDLC (PF01221) and SmAldolase (PF00274). Finally, it was demonstrated that immunoregulatory serological processes typically associated with allergens also occurred in responses to allergen-like proteins in S. mansoni infections, including the production of IgG4 in people responding with IgE and the down-regulation of IgE in response to increased antigen exposure from S. mansoni eggs. This study establishes that structures of known allergens can be used to predict IgE responses against homologous parasite allergen-like molecules (parallergens) and that serological responses with IgE/IgG4 to parallergens mirror those seen against allergens, supporting our hypothesis that allergenicity is rooted in expression of certain protein domain families in metazoan parasites.
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spelling pubmed-43151182015-02-17 Known Allergen Structures Predict Schistosoma mansoni IgE-Binding Antigens in Human Infection Farnell, Edward J. Tyagi, Nidhi Ryan, Stephanie Chalmers, Iain W. Pinot de Moira, Angela Jones, Frances M. Wawrzyniak, Jakub Fitzsimmons, Colin M. Tukahebwa, Edridah M. Furnham, Nicholas Maizels, Rick M. Dunne, David W. Front Immunol Immunology The IgE response has been associated with both allergic reactions and immunity to metazoan parasites. Recently, we hypothesized that all environmental allergens bear structural homology to IgE-binding antigens from metazoan parasites and that this homology defines the relatively small number of protein families containing allergenic targets. In this study, known allergen structures (Pfam domains) from major environmental allergen families were used to predict allergen-like (SmProfilin, SmVAL-6, SmLipocalin, SmHSP20, Sm triosephosphate isomerase, SmThioredoxin, Sm superoxide dismutase, SmCyclophilin, and Sm phosphoglycerate kinase) and non-allergen-like [Sm dynein light chain (SmDLC), SmAldolase SmAK, SmUbiquitin, and Sm14-3-3] proteins in Schistosoma mansoni. Recombinant antigens were produced in Escherichia coli and IgG1, IgG4, and IgE responses against them measured in a cohort of people (n = 222) infected with S. mansoni. All allergen-like antigens were targeted by IgE responses in infected subjects, whilst IgE responses to the non-allergen-like antigens, SmAK, SmUbiquitin, and Sm14-3-3 were essentially absent being of both low prevalence and magnitude. Two new IgE-binding Pfam domain families, not previously described in allergen family databases, were also found, with prevalent IgE responses against SmDLC (PF01221) and SmAldolase (PF00274). Finally, it was demonstrated that immunoregulatory serological processes typically associated with allergens also occurred in responses to allergen-like proteins in S. mansoni infections, including the production of IgG4 in people responding with IgE and the down-regulation of IgE in response to increased antigen exposure from S. mansoni eggs. This study establishes that structures of known allergens can be used to predict IgE responses against homologous parasite allergen-like molecules (parallergens) and that serological responses with IgE/IgG4 to parallergens mirror those seen against allergens, supporting our hypothesis that allergenicity is rooted in expression of certain protein domain families in metazoan parasites. Frontiers Media S.A. 2015-02-03 /pmc/articles/PMC4315118/ /pubmed/25691884 http://dx.doi.org/10.3389/fimmu.2015.00026 Text en Copyright © 2015 Farnell, Tyagi, Ryan, Chalmers, Pinot de Moira, Jones, Wawrzyniak, Fitzsimmons, Tukahebwa, Furnham, Maizels and Dunne. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Farnell, Edward J.
Tyagi, Nidhi
Ryan, Stephanie
Chalmers, Iain W.
Pinot de Moira, Angela
Jones, Frances M.
Wawrzyniak, Jakub
Fitzsimmons, Colin M.
Tukahebwa, Edridah M.
Furnham, Nicholas
Maizels, Rick M.
Dunne, David W.
Known Allergen Structures Predict Schistosoma mansoni IgE-Binding Antigens in Human Infection
title Known Allergen Structures Predict Schistosoma mansoni IgE-Binding Antigens in Human Infection
title_full Known Allergen Structures Predict Schistosoma mansoni IgE-Binding Antigens in Human Infection
title_fullStr Known Allergen Structures Predict Schistosoma mansoni IgE-Binding Antigens in Human Infection
title_full_unstemmed Known Allergen Structures Predict Schistosoma mansoni IgE-Binding Antigens in Human Infection
title_short Known Allergen Structures Predict Schistosoma mansoni IgE-Binding Antigens in Human Infection
title_sort known allergen structures predict schistosoma mansoni ige-binding antigens in human infection
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4315118/
https://www.ncbi.nlm.nih.gov/pubmed/25691884
http://dx.doi.org/10.3389/fimmu.2015.00026
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