Literature DB >> 27359111

Sequence conservation predicts T cell reactivity against ragweed allergens.

J Pham1, C Oseroff1, D Hinz1, J Sidney1, S Paul1, J Greenbaum1, R Vita1, E Phillips2,3, S Mallal2,3, B Peters1, A Sette1.   

Abstract

BACKGROUND: Ragweed is a major cause of seasonal allergy, affecting millions of people worldwide. Several allergens have been defined based on IgE reactivity, but their relative immunogenicity in terms of T cell responses has not been studied.
OBJECTIVE: We comprehensively characterized T cell responses from atopic, ragweed-allergic subjects to Amb a 1, Amb a 3, Amb a 4, Amb a 5, Amb a 6, Amb a 8, Amb a 9, Amb a 10, Amb a 11, and Amb p 5 and examined their correlation with serological reactivity and sequence conservation in other allergens.
METHODS: Peripheral blood mononuclear cells (PBMCs) from donors positive for IgE towards ragweed extracts after in vitro expansion for secretion of IL-5 (a representative Th2 cytokine) and IFN-γ (Th1) in response to a panel of overlapping peptides spanning the above-listed allergens were assessed.
RESULTS: Three previously identified dominant T cell epitopes (Amb a 1 176-191, 200-215, and 344-359) were confirmed, and three novel dominant epitopes (Amb a 1 280-295, 304-319, and 320-335) were identified. Amb a 1, the dominant IgE allergen, was also the dominant T cell allergen, but dominance patterns for T cell and IgE responses for the other ragweed allergens did not correlate. Dominance for T cell responses correlated with conservation of ragweed epitopes with sequences of other well-known allergens. CONCLUSIONS AND CLINICAL RELEVANCE: These results provide the first assessment of the hierarchy of T cell reactivity in ragweed allergens, which is distinct from that observed for IgE reactivity and influenced by T cell epitope sequence conservation. The results suggest that ragweed allergens associated with lesser IgE reactivity and significant T cell reactivity may be targeted for T cell immunotherapy, and further support the development of immunotherapies against epitopes conserved across species to generate broad reactivity against many common allergens.
© 2016 John Wiley & Sons Ltd.

Entities:  

Keywords:  T cell epitopes; allergens; ragweed

Mesh:

Substances:

Year:  2016        PMID: 27359111      PMCID: PMC5007187          DOI: 10.1111/cea.12772

Source DB:  PubMed          Journal:  Clin Exp Allergy        ISSN: 0954-7894            Impact factor:   5.018


  36 in total

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Review 2.  Guilt by intimate association: what makes an allergen an allergen?

Authors:  Christopher L Karp
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Journal:  Clin Exp Allergy       Date:  2016-03       Impact factor: 5.018

4.  Humoral and cellular cross-reactivity between Amb a 1, the major ragweed pollen allergen, and its mugwort homolog Art v 6.

Authors:  Beatrice Jahn-Schmid; Michael Hauser; Nicole Wopfner; Peter Briza; Uwe E Berger; Riccardo Asero; Christof Ebner; Fatima Ferreira; Barbara Bohle
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5.  Molecular determinants of T cell epitope recognition to the common Timothy grass allergen.

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Journal:  J Immunol       Date:  2010-06-16       Impact factor: 5.422

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7.  The alpha and beta subchain of Amb a 1, the major ragweed-pollen allergen show divergent reactivity at the IgE and T-cell level.

Authors:  Nicole Wopfner; Beatrice Jahn-Schmid; Georg Schmidt; Tanja Christ; Gudrun Hubinger; Peter Briza; Christian Radauer; Barbara Bohle; Lothar Vogel; Christof Ebner; Riccardo Asero; Fatima Ferreira; Robert Schwarzenbacher
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Review 8.  [Ambrosia pollinosis].

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10.  T-cell epitope conservation across allergen species is a major determinant of immunogenicity.

Authors:  Luise Westernberg; Véronique Schulten; Jason A Greenbaum; Sara Natali; Victoria Tripple; Denise M McKinney; April Frazier; Heidi Hofer; Michael Wallner; Federica Sallusto; Alessandro Sette; Bjoern Peters
Journal:  J Allergy Clin Immunol       Date:  2016-02-13       Impact factor: 10.793

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1.  Immunodominance in allergic T-cell reactivity to Japanese cedar in different geographic cohorts.

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3.  Fulminant Myocarditis with Combination Immune Checkpoint Blockade.

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Review 5.  A Review on T Cell Epitopes Identified Using Prediction and Cell-Mediated Immune Models for Mycobacterium tuberculosis and Bordetella pertussis.

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6.  Genetic restriction of antigen-presentation dictates allergic sensitization and disease in humanized mice.

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7.  Allergen and Epitope Targets of Mouse-Specific T Cell Responses in Allergy and Asthma.

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8.  Predicting HLA CD4 Immunogenicity in Human Populations.

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9.  Identification of Novel Yellow Fever Class II Epitopes in YF-17D Vaccinees.

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