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Recombinant glycoproteins resembling carbohydrate-specific IgE epitopes from plants, venoms and mites

BACKGROUND: N-linked glycans present in venoms, pollen and mites are recognized by IgE antibodies from >20% of allergic patients but have low or no allergenic activity. OBJECTIVES: To engineer recombinant glycoproteins resembling carbohydrate-specific IgE epitopes from venoms, pollen and mites wh...

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Autores principales: Gattinger, Pia, Mittermann, Irene, Lupinek, Christian, Hofer, Gerhard, Keller, Walter, Bidovec Stojkovic, Urska, Korosec, Peter, Koessler, Christine, Novak, Natalija, Valenta, Rudolf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6354707/
https://www.ncbi.nlm.nih.gov/pubmed/30581149
http://dx.doi.org/10.1016/j.ebiom.2018.12.002
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author Gattinger, Pia
Mittermann, Irene
Lupinek, Christian
Hofer, Gerhard
Keller, Walter
Bidovec Stojkovic, Urska
Korosec, Peter
Koessler, Christine
Novak, Natalija
Valenta, Rudolf
author_facet Gattinger, Pia
Mittermann, Irene
Lupinek, Christian
Hofer, Gerhard
Keller, Walter
Bidovec Stojkovic, Urska
Korosec, Peter
Koessler, Christine
Novak, Natalija
Valenta, Rudolf
author_sort Gattinger, Pia
collection PubMed
description BACKGROUND: N-linked glycans present in venoms, pollen and mites are recognized by IgE antibodies from >20% of allergic patients but have low or no allergenic activity. OBJECTIVES: To engineer recombinant glycoproteins resembling carbohydrate-specific IgE epitopes from venoms, pollen and mites which can discriminate carbohydrate-specific IgE from allergenic, peptide-specific IgE. METHODS: One or two N-glycosylation sites were engineered into the N-terminus of the non-allergenic protein horse heart myoglobin (HHM) using synthetic gene technology. HHM 1 and HHM 2 containing one or two N-glycosylation sites were expressed in baculovirus-infected High-Five™ insect cells and a non-glycosylated version (HHM 0) was obtained by mutating the glycosylation motif. Recombinant HHM proteins were analyzed regarding fold and aggregation by circular dichroism and gel filtration, respectively. IgE reactivity was assessed by ELISA, immunoblotting and quantitative ImmunoCAP measurements. IgE inhibition assays were performed to study cross-reactivity with venom, plant and mite-derived carbohydrate IgE epitopes. RESULTS: HHM-glycovariants were expressed and purified from insect cells as monomeric and folded proteins. The HHM-glycovariants exhibited strictly carbohydrate-specific IgE reactivity, designed to quantify carbohydrate-specific IgE and resembled IgE epitopes of pollen, venom and mite-derived carbohydrates. IgE-reactivity and inhibition experiments established a hierarchy of plant glcyoallergens (nPhl p 4 > nCyn d 1 > nPla a 2 > nJug r 2 > nCup a 1 > nCry j 1) indicating a hitherto unknown heterogeneity of carbohydrate IgE epitopes in plants which were completely represented by HHM 2. CONCLUSION: Defined recombinant HHM-glycoproteins resembling carbohydrate-specific IgE epitopes from plants, venoms and mites were engineered which made it possible to discriminate carbohydrate- from peptide-specific IgE reactivity.
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spelling pubmed-63547072019-02-07 Recombinant glycoproteins resembling carbohydrate-specific IgE epitopes from plants, venoms and mites Gattinger, Pia Mittermann, Irene Lupinek, Christian Hofer, Gerhard Keller, Walter Bidovec Stojkovic, Urska Korosec, Peter Koessler, Christine Novak, Natalija Valenta, Rudolf EBioMedicine Research paper BACKGROUND: N-linked glycans present in venoms, pollen and mites are recognized by IgE antibodies from >20% of allergic patients but have low or no allergenic activity. OBJECTIVES: To engineer recombinant glycoproteins resembling carbohydrate-specific IgE epitopes from venoms, pollen and mites which can discriminate carbohydrate-specific IgE from allergenic, peptide-specific IgE. METHODS: One or two N-glycosylation sites were engineered into the N-terminus of the non-allergenic protein horse heart myoglobin (HHM) using synthetic gene technology. HHM 1 and HHM 2 containing one or two N-glycosylation sites were expressed in baculovirus-infected High-Five™ insect cells and a non-glycosylated version (HHM 0) was obtained by mutating the glycosylation motif. Recombinant HHM proteins were analyzed regarding fold and aggregation by circular dichroism and gel filtration, respectively. IgE reactivity was assessed by ELISA, immunoblotting and quantitative ImmunoCAP measurements. IgE inhibition assays were performed to study cross-reactivity with venom, plant and mite-derived carbohydrate IgE epitopes. RESULTS: HHM-glycovariants were expressed and purified from insect cells as monomeric and folded proteins. The HHM-glycovariants exhibited strictly carbohydrate-specific IgE reactivity, designed to quantify carbohydrate-specific IgE and resembled IgE epitopes of pollen, venom and mite-derived carbohydrates. IgE-reactivity and inhibition experiments established a hierarchy of plant glcyoallergens (nPhl p 4 > nCyn d 1 > nPla a 2 > nJug r 2 > nCup a 1 > nCry j 1) indicating a hitherto unknown heterogeneity of carbohydrate IgE epitopes in plants which were completely represented by HHM 2. CONCLUSION: Defined recombinant HHM-glycoproteins resembling carbohydrate-specific IgE epitopes from plants, venoms and mites were engineered which made it possible to discriminate carbohydrate- from peptide-specific IgE reactivity. Elsevier 2018-12-20 /pmc/articles/PMC6354707/ /pubmed/30581149 http://dx.doi.org/10.1016/j.ebiom.2018.12.002 Text en © 2018 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Gattinger, Pia
Mittermann, Irene
Lupinek, Christian
Hofer, Gerhard
Keller, Walter
Bidovec Stojkovic, Urska
Korosec, Peter
Koessler, Christine
Novak, Natalija
Valenta, Rudolf
Recombinant glycoproteins resembling carbohydrate-specific IgE epitopes from plants, venoms and mites
title Recombinant glycoproteins resembling carbohydrate-specific IgE epitopes from plants, venoms and mites
title_full Recombinant glycoproteins resembling carbohydrate-specific IgE epitopes from plants, venoms and mites
title_fullStr Recombinant glycoproteins resembling carbohydrate-specific IgE epitopes from plants, venoms and mites
title_full_unstemmed Recombinant glycoproteins resembling carbohydrate-specific IgE epitopes from plants, venoms and mites
title_short Recombinant glycoproteins resembling carbohydrate-specific IgE epitopes from plants, venoms and mites
title_sort recombinant glycoproteins resembling carbohydrate-specific ige epitopes from plants, venoms and mites
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6354707/
https://www.ncbi.nlm.nih.gov/pubmed/30581149
http://dx.doi.org/10.1016/j.ebiom.2018.12.002
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