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Structure of a patient-derived antibody in complex with allergen reveals simultaneous conventional and superantigen-like recognition

Antibodies classically bind antigens via their complementarity-determining regions, but an alternative mode of interaction involving V-domain framework regions has been observed for some B cell “superantigens.” We report the crystal structure of an antibody employing both modes of interaction simult...

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Autores principales: Mitropoulou, Alkistis N., Bowen, Holly, Dodev, Tihomir S., Davies, Anna M., Bax, Heather J., Beavil, Rebecca L., Beavil, Andrew J., Gould, Hannah J., James, Louisa K., Sutton, Brian J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6140506/
https://www.ncbi.nlm.nih.gov/pubmed/30150373
http://dx.doi.org/10.1073/pnas.1806840115
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author Mitropoulou, Alkistis N.
Bowen, Holly
Dodev, Tihomir S.
Davies, Anna M.
Bax, Heather J.
Beavil, Rebecca L.
Beavil, Andrew J.
Gould, Hannah J.
James, Louisa K.
Sutton, Brian J.
author_facet Mitropoulou, Alkistis N.
Bowen, Holly
Dodev, Tihomir S.
Davies, Anna M.
Bax, Heather J.
Beavil, Rebecca L.
Beavil, Andrew J.
Gould, Hannah J.
James, Louisa K.
Sutton, Brian J.
author_sort Mitropoulou, Alkistis N.
collection PubMed
description Antibodies classically bind antigens via their complementarity-determining regions, but an alternative mode of interaction involving V-domain framework regions has been observed for some B cell “superantigens.” We report the crystal structure of an antibody employing both modes of interaction simultaneously and binding two antigen molecules. This human antibody from an allergic individual binds to the grass pollen allergen Phl p 7. Not only are two allergen molecules bound to each antibody fragment (Fab) but also each allergen molecule is bound by two Fabs: One epitope is recognized classically, the other in a superantigen-like manner. A single allergen molecule thus cross-links two identical Fabs, contrary to the one-antibody–one-epitope dogma, which dictates that a dimeric allergen at least is required for this to occur. Allergens trigger immediate hypersensitivity reactions by cross-linking receptor-bound IgE molecules on effector cells. We found that monomeric Phl p 7 induced degranulation of basophils sensitized solely with this monoclonal antibody expressed as an IgE, demonstrating that the dual specificity has functional consequences. The monomeric state of Phl p 7 and two structurally related allergens was confirmed by size-exclusion chromatography and multiangle laser light scattering, and the results were supported by degranulation studies with the related allergens, a second patient-derived allergen-specific antibody lacking the nonclassical binding site, and mutagenesis of the nonclassically recognized allergen epitope. The antibody dual reactivity and cross-linking mechanism not only have implications for understanding allergenicity and allergen potency but, importantly, also have broader relevance to antigen recognition by membrane Ig and cross-linking of the B cell receptor.
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spelling pubmed-61405062018-09-18 Structure of a patient-derived antibody in complex with allergen reveals simultaneous conventional and superantigen-like recognition Mitropoulou, Alkistis N. Bowen, Holly Dodev, Tihomir S. Davies, Anna M. Bax, Heather J. Beavil, Rebecca L. Beavil, Andrew J. Gould, Hannah J. James, Louisa K. Sutton, Brian J. Proc Natl Acad Sci U S A PNAS Plus Antibodies classically bind antigens via their complementarity-determining regions, but an alternative mode of interaction involving V-domain framework regions has been observed for some B cell “superantigens.” We report the crystal structure of an antibody employing both modes of interaction simultaneously and binding two antigen molecules. This human antibody from an allergic individual binds to the grass pollen allergen Phl p 7. Not only are two allergen molecules bound to each antibody fragment (Fab) but also each allergen molecule is bound by two Fabs: One epitope is recognized classically, the other in a superantigen-like manner. A single allergen molecule thus cross-links two identical Fabs, contrary to the one-antibody–one-epitope dogma, which dictates that a dimeric allergen at least is required for this to occur. Allergens trigger immediate hypersensitivity reactions by cross-linking receptor-bound IgE molecules on effector cells. We found that monomeric Phl p 7 induced degranulation of basophils sensitized solely with this monoclonal antibody expressed as an IgE, demonstrating that the dual specificity has functional consequences. The monomeric state of Phl p 7 and two structurally related allergens was confirmed by size-exclusion chromatography and multiangle laser light scattering, and the results were supported by degranulation studies with the related allergens, a second patient-derived allergen-specific antibody lacking the nonclassical binding site, and mutagenesis of the nonclassically recognized allergen epitope. The antibody dual reactivity and cross-linking mechanism not only have implications for understanding allergenicity and allergen potency but, importantly, also have broader relevance to antigen recognition by membrane Ig and cross-linking of the B cell receptor. National Academy of Sciences 2018-09-11 2018-08-27 /pmc/articles/PMC6140506/ /pubmed/30150373 http://dx.doi.org/10.1073/pnas.1806840115 Text en Copyright © 2018 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle PNAS Plus
Mitropoulou, Alkistis N.
Bowen, Holly
Dodev, Tihomir S.
Davies, Anna M.
Bax, Heather J.
Beavil, Rebecca L.
Beavil, Andrew J.
Gould, Hannah J.
James, Louisa K.
Sutton, Brian J.
Structure of a patient-derived antibody in complex with allergen reveals simultaneous conventional and superantigen-like recognition
title Structure of a patient-derived antibody in complex with allergen reveals simultaneous conventional and superantigen-like recognition
title_full Structure of a patient-derived antibody in complex with allergen reveals simultaneous conventional and superantigen-like recognition
title_fullStr Structure of a patient-derived antibody in complex with allergen reveals simultaneous conventional and superantigen-like recognition
title_full_unstemmed Structure of a patient-derived antibody in complex with allergen reveals simultaneous conventional and superantigen-like recognition
title_short Structure of a patient-derived antibody in complex with allergen reveals simultaneous conventional and superantigen-like recognition
title_sort structure of a patient-derived antibody in complex with allergen reveals simultaneous conventional and superantigen-like recognition
topic PNAS Plus
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6140506/
https://www.ncbi.nlm.nih.gov/pubmed/30150373
http://dx.doi.org/10.1073/pnas.1806840115
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