Identification, recombinant expression, and characterization of the 100 kDa high molecular weight Hymenoptera venom allergens Api m 5 and Ves v 3.

نویسندگان

  • Simon Blank
  • Henning Seismann
  • Benjamin Bockisch
  • Ingke Braren
  • Liliana Cifuentes
  • Mareike McIntyre
  • Dana Rühl
  • Johannes Ring
  • Reinhard Bredehorst
  • Markus W Ollert
  • Thomas Grunwald
  • Edzard Spillner
چکیده

Insect stings can cause life-threatening IgE-mediated anaphylactic reactions in venom-allergic patients. Although several compounds have already been described as venom allergens, prominent allergen candidates especially in the higher m.w. range have still remained elusive. Tandem mass spectrometry-based sequencing assigned a candidate gene to the most prominent putative high m.w. allergen Api m 5 (allergen C) in honeybee (Apis mellifera) venom and also allowed identification of its homologue Ves v 3 in yellow jacket (Vespula vulgaris) venom. Both proteins exhibit a pronounced sequence identity to human dipeptidyl peptidase IV or CD26. Reactivity of a human IgE mAb verified the presence of these proteins in the venoms. Both proteins were produced in insect cells and characterized for their enzymatic activity as well as their allergenic potential using sera and basophils from insect venom-allergic patients. Both Api m 5 and Ves v 3 were recognized by specific IgE of the majority of patients even in the absence of cross-reactive carbohydrate determinants. Serologic IgE reactivity closely matched activation of human basophils by Api m 5 or Ves v 3, thus underlining their relevance in functional assays. With Api m 5 and Ves v 3, a new pair of homologous allergens becomes available for future clinical applications in diagnosis and therapy that may also contribute to the understanding of molecular mechanisms of insect venoms. Moreover, the patient IgE reactivity together with the cellular activation demonstrates for the first time the relevance of high m.w. allergens in the context of hymenoptera venom allergy.

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منابع مشابه

Vitellogenins Are New High Molecular Weight Components and Allergens (Api m 12 and Ves v 6) of Apis mellifera and Vespula vulgaris Venom

BACKGROUND/OBJECTIVES Anaphylaxis due to hymenoptera stings is one of the most severe clinical outcomes of IgE-mediated hypersensitivity reactions. Although allergic reactions to hymenoptera stings are often considered as a general model for the underlying principles of allergic disease, venom immunotherapy is still hampered by severe systemic side effects and incomplete protection. The identif...

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Recombinant phospholipase A1 (Ves v 1) from yellow jacket venom for improved diagnosis of hymenoptera venom hypersensitivity

BACKGROUND Hymenoptera venoms are known to cause life-threatening IgE-mediated anaphylactic reactions in allergic individuals. Proper diagnosis of hymenoptera venom allergy using venom extracts is severely affected by molecular cross-reactivities. Although non-glycosylated marker allergens would facilitate the identification of the culprit venom, the major allergen phospholipase A1 (Ves v 1) fr...

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Specific allergen concentration of WHO and FDA reference preparations measured using a multiple allergen standard.

of diagnostic tests based on recombinant yellow jacket venom allergens. Nevertheless, rVes v 5 and rVes v 1 had missed 8% of subjects with established allergy. Testing for rVes v 2b added only a minor contribution to diagnostic sensitivity. Primarily, 3 allergens were recognized as responsible for Vespula venom allergy, beyond Ves v 5 and Ves v 1, also Ves v 2, which occurs in isoforms. Recentl...

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عنوان ژورنال:
  • Journal of immunology

دوره 184 9  شماره 

صفحات  -

تاریخ انتشار 2010