IgE-binding epitopes of enolases, a class of highly conserved fungal allergens

被引:98
作者
Simon-Nobbe, B
Probst, G
Kajava, AV
Oberkofler, H
Susani, M
Crameri, R
Ferreira, F
Ebner, C
Breitenbach, M
机构
[1] Salzburg Univ, Inst Genet & Gen Biol, A-5020 Salzburg, Austria
[2] Univ Vienna, Dept Pathophysiol, Vienna, Austria
[3] Swiss Inst Allergy & Asthma Res, CH-7270 Davos, Switzerland
[4] Adv Biol Syst Inc, Salzburg, Austria
[5] Landeskrankenanstalten Salzburg, Dept Lab Med, Salzburg, Austria
[6] NIH, Ctr Mol Modeling, CIT, Bethesda, MD 20892 USA
[7] Austrian Acad Sci, Inst Mol Biol, A-5020 Salzburg, Austria
关键词
enolase; structure; epitope; mold; allergy; Cladosporium herbarum; Alternaria alternata; Aspergillus fumigatus; Candida albicans; Saccharomyces cerevisiae;
D O I
10.1067/mai.2000.110799
中图分类号
R392 [医学免疫学];
学科分类号
100102 ;
摘要
Background: Cladosporium herbarum and Alternaria alternata are two of the most prominent fungal species inducing type I allergy. Previously, we have demonstrated that enolase (Cla h 6) is the second most important allergen of C herbarum in terms of frequency of sensitization. Objective: IgE-reactive B-cell epitopes of C herbarum enolase were analyzed, and cross-reactivity between fungal enolases was investigated. Methods: Cla h 6 glutathione-S-transferase fusion peptides were constructed by means of PCR cloning, A alternata enolase (Alt a 5) was isolated by screening a complementary (c)DNA expression library with a C herbarum enolase DNA probe. Results: Mapping of Cla h 6 IgE-binding epitopes identified a peptide with a length of 69 amino acids (peptide 9), which bound IgE from 8 of 8 patients. Analysis of the conformation of peptide 9 revealed that it does not form a compact structure but rather spans the whole length of the protein, with side chains exposed to solvent at 3 locations. Peptide 9 in the context of Escherichia coli glutathione-S-transferase not only binds IgE but also competitively inhibits IgE binding to Alt a 5. This result indicates that the epitope or epitopes on peptide 9 constitute a major cross-reacting epitope or epitopes on the enolases from C herbarum and A alternata in the case of the! one patient tested. Conclusions: We demonstrated that the glycolytic enzyme enolase is an allergen not only in C herbarum but also in A alternata. Additionally, enolase was shown to exhibit high cross-reactivity to other fungal enolases. On the basis of the results presented here, we propose the use of recombinant Cia h 6 or maybe even peptide 9 of Cia h 6 for diagnosis and possibly therapy of mold allergy.
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页码:887 / 895
页数:9
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