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Critical and direct involvement of the CD23 stalk region in IgE binding

BACKGROUND: The low-affinity receptor for IgE, FcεRII (CD23), contributes to allergic inflammation through allergen presentation to T cells, regulation of IgE responses, and enhancement of transepithelial allergen migration. OBJECTIVE: We sought to investigate the interaction between CD23, chimeric...

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Autores principales: Selb, Regina, Eckl-Dorna, Julia, Twaroch, Teresa E., Lupinek, Christian, Teufelberger, Andrea, Hofer, Gerhard, Focke-Tejkl, Margarete, Gepp, Barbara, Linhart, Birgit, Breiteneder, Heimo, Ellinger, Adolf, Keller, Walter, Roux, Kenneth H., Valenta, Rudolf, Niederberger, Verena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5321597/
https://www.ncbi.nlm.nih.gov/pubmed/27343203
http://dx.doi.org/10.1016/j.jaci.2016.04.015
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author Selb, Regina
Eckl-Dorna, Julia
Twaroch, Teresa E.
Lupinek, Christian
Teufelberger, Andrea
Hofer, Gerhard
Focke-Tejkl, Margarete
Gepp, Barbara
Linhart, Birgit
Breiteneder, Heimo
Ellinger, Adolf
Keller, Walter
Roux, Kenneth H.
Valenta, Rudolf
Niederberger, Verena
author_facet Selb, Regina
Eckl-Dorna, Julia
Twaroch, Teresa E.
Lupinek, Christian
Teufelberger, Andrea
Hofer, Gerhard
Focke-Tejkl, Margarete
Gepp, Barbara
Linhart, Birgit
Breiteneder, Heimo
Ellinger, Adolf
Keller, Walter
Roux, Kenneth H.
Valenta, Rudolf
Niederberger, Verena
author_sort Selb, Regina
collection PubMed
description BACKGROUND: The low-affinity receptor for IgE, FcεRII (CD23), contributes to allergic inflammation through allergen presentation to T cells, regulation of IgE responses, and enhancement of transepithelial allergen migration. OBJECTIVE: We sought to investigate the interaction between CD23, chimeric monoclonal human IgE, and the corresponding birch pollen allergen Bet v 1 at a molecular level. METHODS: We expressed 4 CD23 variants. One variant comprised the full extracellular portion of CD23, including the stalk and head domain; 1 variant was identical with the first, except for an amino acid exchange in the stalk region abolishing the N-linked glycosylation site; and 2 variants represented the head domain, 1 complete and 1 truncated. The 4 CD23 variants were purified as monomeric and structurally folded proteins, as demonstrated by gel filtration and circular dichroism. By using a human IgE mAb, the corresponding allergen Bet v 1, and a panel of antibodies specific for peptides spanning the CD23 surface, both binding and inhibition assays and negative stain electron microscopy were performed. RESULTS: A hitherto unknown IgE-binding site was mapped on the stalk region of CD23, and the non–N-glycosylated monomeric version of CD23 was superior in IgE binding compared with glycosylated CD23. Furthermore, we demonstrated that a therapeutic anti-IgE antibody, omalizumab, which inhibits IgE binding to FcεRI, also inhibited IgE binding to CD23. CONCLUSION: Our results provide a new model for the CD23-IgE interaction. We show that the stalk region of CD23 is crucially involved in IgE binding and that the interaction can be blocked by the therapeutic anti-IgE antibody omalizumab.
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spelling pubmed-53215972017-02-22 Critical and direct involvement of the CD23 stalk region in IgE binding Selb, Regina Eckl-Dorna, Julia Twaroch, Teresa E. Lupinek, Christian Teufelberger, Andrea Hofer, Gerhard Focke-Tejkl, Margarete Gepp, Barbara Linhart, Birgit Breiteneder, Heimo Ellinger, Adolf Keller, Walter Roux, Kenneth H. Valenta, Rudolf Niederberger, Verena J Allergy Clin Immunol Article BACKGROUND: The low-affinity receptor for IgE, FcεRII (CD23), contributes to allergic inflammation through allergen presentation to T cells, regulation of IgE responses, and enhancement of transepithelial allergen migration. OBJECTIVE: We sought to investigate the interaction between CD23, chimeric monoclonal human IgE, and the corresponding birch pollen allergen Bet v 1 at a molecular level. METHODS: We expressed 4 CD23 variants. One variant comprised the full extracellular portion of CD23, including the stalk and head domain; 1 variant was identical with the first, except for an amino acid exchange in the stalk region abolishing the N-linked glycosylation site; and 2 variants represented the head domain, 1 complete and 1 truncated. The 4 CD23 variants were purified as monomeric and structurally folded proteins, as demonstrated by gel filtration and circular dichroism. By using a human IgE mAb, the corresponding allergen Bet v 1, and a panel of antibodies specific for peptides spanning the CD23 surface, both binding and inhibition assays and negative stain electron microscopy were performed. RESULTS: A hitherto unknown IgE-binding site was mapped on the stalk region of CD23, and the non–N-glycosylated monomeric version of CD23 was superior in IgE binding compared with glycosylated CD23. Furthermore, we demonstrated that a therapeutic anti-IgE antibody, omalizumab, which inhibits IgE binding to FcεRI, also inhibited IgE binding to CD23. CONCLUSION: Our results provide a new model for the CD23-IgE interaction. We show that the stalk region of CD23 is crucially involved in IgE binding and that the interaction can be blocked by the therapeutic anti-IgE antibody omalizumab. 2016-05-07 2017-01 /pmc/articles/PMC5321597/ /pubmed/27343203 http://dx.doi.org/10.1016/j.jaci.2016.04.015 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Selb, Regina
Eckl-Dorna, Julia
Twaroch, Teresa E.
Lupinek, Christian
Teufelberger, Andrea
Hofer, Gerhard
Focke-Tejkl, Margarete
Gepp, Barbara
Linhart, Birgit
Breiteneder, Heimo
Ellinger, Adolf
Keller, Walter
Roux, Kenneth H.
Valenta, Rudolf
Niederberger, Verena
Critical and direct involvement of the CD23 stalk region in IgE binding
title Critical and direct involvement of the CD23 stalk region in IgE binding
title_full Critical and direct involvement of the CD23 stalk region in IgE binding
title_fullStr Critical and direct involvement of the CD23 stalk region in IgE binding
title_full_unstemmed Critical and direct involvement of the CD23 stalk region in IgE binding
title_short Critical and direct involvement of the CD23 stalk region in IgE binding
title_sort critical and direct involvement of the cd23 stalk region in ige binding
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5321597/
https://www.ncbi.nlm.nih.gov/pubmed/27343203
http://dx.doi.org/10.1016/j.jaci.2016.04.015
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