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Molecular and Immunological Characterization of Arginine Kinase from the Indianmeal Moth, <i>Plodia interpunctella</i> , a Novel Cross-Reactive Invertebrate Pan-Allergen

Marina BinderDivision of Specific Prophylaxis and Tropical Medicine, University of Vienna , Vienna ,Vera MahlerDivision of Immunopathology, Department of Pathophysiology, University of Vienna , Vienna ,Brigitte HayekDivision of Specific Prophylaxis and Tropical Medicine, University of Vienna , Vienna ,Wolfgang R. SperrDivision of Hematology and Hemostaseology, Department of Internal Medicine I, University of Vienna , Vienna ,Matthias SchöllerDivision of Specific Prophylaxis and Tropical Medicine, University of Vienna , Vienna ,Sabine ProzellDivision of Specific Prophylaxis and Tropical Medicine, University of Vienna , Vienna ,G WiedermannDivision of Specific Prophylaxis and Tropical Medicine, University of Vienna , Vienna ,Peter ValentDivision of Hematology and Hemostaseology, Department of Internal Medicine I, University of Vienna , Vienna ,Rudolf ValentaDivision of Immunopathology, Department of Pathophysiology, University of Vienna , Vienna ,Michael DuchêneDivision of Specific Prophylaxis and Tropical Medicine, University of Vienna , Vienna ,
The Journal of Immunologyjournal2001en
ABI

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IgE recognition of indoor allergens represents a major cause of allergic asthma in atopic individuals. We found that 52 of 102 patients suffering from allergic symptoms indoors contained IgE Abs against allergens from the Indianmeal moth (Plodia interpunctella), a ubiquitous food pest. Using serum IgE from a moth-sensitized patient we screened an expression cDNA library constructed from P. interpunctella larvae. cDNAs coding for arginine kinase (EC 2.7.3.3), a 40-kDa enzyme commonly occurring in invertebrates that is involved in the storage of such high-energy phosphate bonds as phosphoarginine, were isolated. Recombinant moth arginine kinase, designated Plo i 1, was expressed in Escherichia coli as a histidine-tagged protein with enzymatic activity, and purified to homogeneity by nickel chelate affinity chromatography. Purified recombinant arginine kinase induced specific basophil histamine release and immediate as well as late-phase skin reactions. It reacted with serum IgE from 13 of the 52 (25%) moth-allergic patients and inhibited the binding of allergic patients' IgE to an immunologically related 40-kDa allergen present in house dust mite, cockroach, king prawn, lobster, and mussel. Our results indicate that arginine kinases represent a new class of cross-reactive invertebrate pan-allergens. Recombinant arginine kinase may be used to identify a group of polysensitized indoor allergic patients and for immunotherapy of these individuals.

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