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Original article
Peptide-induced immune regulation by a promiscuous and immunodominant CD4T-cell epitope of Timothy grass pollen: a role of Cbl-b and Itch in regulation
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  1. Stephen J Till1,2,
  2. Eleanor J Raynsford2,3,
  3. Catherine J Reynolds2,3,
  4. Kathryn J Quigley2,3,
  5. Agnieszka Grzybowska-Kowalczyk2,3,
  6. Lavina R Saggar2,
  7. Andrea Goldstone2,4,
  8. Bernard Maillere5,
  9. William W Kwok6,
  10. Daniel M Altmann3,
  11. Stephen R Durham2,4,
  12. Rosemary J Boyton2,3,4
  1. 1Department of Asthma, Allergy and Respiratory Science, Division of Asthma, Allergy & Lung Biology, MRC & Asthma UK Centre in Allergic Mechanisms of Asthma, King's College London, London, UK
  2. 2Allergy and Clinical Immunology, National Heart and Lung Institute, MRC & Asthma UK Centre in Allergic Mechanisms of Asthma, Imperial College London, London, UK
  3. 3Lung Immunology Group, Section of Infectious Diseases and Immunity, Department of Medicine, MRC & Asthma UK Centre in Allergic Mechanisms of Asthma, Imperial College London, London, UK
  4. 4Department of Respiratory Medicine, Royal Brompton & Harefield NHS Foundation Trust, London, UK
  5. 5Commissariat a L'Energie Atomique (CEA), Saclay, France
  6. 6Benaroya Research Institute, Seattle, USA
  1. Correspondence to Dr Rosemary J Boyton, Lung Immunology Group, Section of Infectious Diseases and Immunity, Department of Medicine, MRC & Asthma UK Centre in Allergic Mechanisms of Asthma, Hammersmith Hospital, Du Cane Road, Imperial College London, London W12 ONN, UK; r.boyton{at}imperial.ac.uk

Abstract

Background T-cell targeted peptide epitope tolerogens from grass pollen allergens may be useful in treating seasonal allergic rhinitis, but there is urgent need for optimisation of approaches from improved understanding of mechanism.

Objective We sought to identify human leukocyte antigen (HLA)-DR1-restricted epitopes from the Timothy grass pollen allergen, Phleum pratense, and characterise T-cell immune regulation following intranasal administration of a single, immunodominant epitope.

Methods T-cell epitopes within P pratense were identified using HLA-DR1 transgenic mice and tetramer-guided epitope mapping (TGEM) in HLA-DR1-positive individuals with grass allergy. An immunodominant epitope was tested in HLA-DR1 transgenics for impact on responses to whole Phl p5 b or peptide. Microarrays and quantitative PCR were used to characterise T-cell immunity.

Results Peptide 26 (p26) was identified in HLA-DR1 transgenic mice and by TGEM analysis of HLA-DR1-positive individuals with grass allergy. p26 shows promiscuous binding to a wide range of HLA class II alleles, making it of relevance across immunogenetically diverse patients. The epitope is conserved in rye and velvet grass, making it applicable across a spectrum of grass pollen allergy. Intranasal pretreatment of mice with p26 results in significantly reduced T-cell responses. Transcriptomic array analysis in mice showed T-cell regulation in the intranasal treatment group associated with increased expression of members of the Cbl-b and Itch E3 ubiquitin ligase pathway.

Conclusions We defined an immunodominant P pratense epitope, p26, with broad binding across multiple HLA class II alleles. Intranasal treatment of mice with p26 results in T-cell regulation to whole allergen, involving the Cbl-b and Itch regulatory pathway.

  • Allergic lung disease
  • Lymphocyte Biology

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