Cloning and molecular and immunological characterisation of two new food allergens, Cap a 2 and Lyc e 1, profilins from bell pepper (Capsicum annuum) and tomato (Lycopersicon esculentum)

被引:50
作者
Willerroider, M
Fuchs, H
Ballmer-Weber, BK
Focke, M
Susani, M
Thalhamer, J
Ferreira, F
Wüthrich, B
Scheiner, O
Breiteneder, H
Hoffmann-Sommergruber, K
机构
[1] Univ Vienna, Dept Pathophysiol, AT-1090 Vienna, Austria
[2] Salzburg Univ, Dept Chem & Biochem, A-5020 Salzburg, Austria
[3] Salzburg Univ, Inst Genet & Gen Biol, A-5020 Salzburg, Austria
[4] Biomay, Vienna, Austria
[5] Univ Zurich Hosp, Dept Dermatol, Allergy Unit, CH-8091 Zurich, Switzerland
关键词
tomato profilin; bell pepper profilin; allergen; cDNA cloning; purification; non-fusion protein; IgE binding;
D O I
10.1159/000072136
中图分类号
R392 [医学免疫学];
学科分类号
100102 ;
摘要
Background. Profilins are recognised by IgE of about 20% of patients allergic to birch pollen and plant foods. They are ubiquitous intracellular proteins highly cross-reactive among plant species. Therefore, they were called panallergens and are made responsible for cross-sensitisation between plant pollen and food. Objectives: The aim of the present study was to clone the cDNAs encoding profilins from bell pepper and tomato, to produce and purify the recombinant proteins and to compare their IgE-binding capacities to those of the natural proteins. Methods: cDNA clones coding for profilin were obtained by RT-PCR from total RNA of tomato and bell pepper fruits, sequenced and expressed as non-fusion proteins in Escherichia coli. The recombinant profilins were subsequently purified and tested for IgE-binding and inhibition capacity with sera from 34 food-allergic patients. Possible oligomerisation of recombinant profilins was investigated by HPLC analysis and its influence on IgE binding assayed by ELISA. Results: The open reading frame from both profilins encompasses 393 by with a predicted molecular mass of 14,184 kD and a pI of 4.44 for bell pepper profilin (Cap a 2) and 14,257 kD and a pi of 4.46 for the profilin from tomato (Lyc a 1). The two protein sequences display 91% identity, whereas tomato profilin from pollen shares only 75% identity with tomato fruit profilin. Eleven out of 34 food-allergic patients (32%) display IgE binding to both purified profilins. Preincubation of a serum pool with either purified rCap a 2 or rLyc e 1 nearly abolished IgE binding to natural Cap a 2 and Lyc a 1, respectively. In addition, purified recombinant Cap a 2 was able to inhibit IgE-binding to rLyc e 1 by approximately 50%, whereas rLyc e 1 completely blocked IgE-binding to rCap a 2 in cross-inhibition assays. HPLC analysis showed that in solution Cap a 2 and. Lyc e 1 can be found predominantly as dimers, which can be partially reduced to monomers by addition of dithiothreitol (DTT). In ELISA DTT-treated Lyc e 1 displayed a clearly lower IgE-binding capacity than untreated profilin. Conclusions: Purified rCap a 2 and rLyc e 1 proved to be valuable tools for studying cross-reactivity to profilins in patients allergic to pollen and food. Introduction Copyright (C) 2003 S. Karger AG, Basel.
引用
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页码:245 / 255
页数:11
相关论文
共 37 条
[1]  
Baatout S, 1996, EUR J CLIN CHEM CLIN, V34, P575
[2]   Profilin forms tetramers that bind to G-actin [J].
Babich, M ;
Foti, LRP ;
Sykaluk, LL ;
Clark, CR .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1996, 218 (01) :125-131
[3]   Carrot allergy:: Double-blinded, placebo-controlled food challenge and identification of allergens [J].
Ballmer-Weber, BK ;
Wüthrich, B ;
Wangorsch, A ;
Fötisch, K ;
Altmann, F ;
Vieths, S .
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY, 2001, 108 (02) :301-307
[4]   Influence of food processing on the allergenicity of celery:: DBPCFC with celery spice and cooked celery in patients with celery allergy [J].
Ballmer-Weber, BK ;
Hoffmann, A ;
Wüthrich, B ;
Lüttkopf, D ;
Pompei, C ;
Wangorsch, A ;
Kästner, M ;
Vieths, S .
ALLERGY, 2002, 57 (03) :228-235
[5]   IgE cross-reactivity between birch pollen, mugwort pollen and celery is due to at least three distinct cross-reacting allergens: Immunoblot investigation of the birch-mugwort-celery syndrome [J].
Bauer, L ;
Ebner, C ;
Hirschwehr, R ;
Wuthrich, B ;
Pichler, C ;
Fritsch, R ;
Scheiner, O ;
Kraft, D .
CLINICAL AND EXPERIMENTAL ALLERGY, 1996, 26 (10) :1161-1170
[6]   STUDIES ON ATOPIC ALLERGEN IN RIPE TOMATO FRUITS .I. ISOLATION AND IDENTIFICATION OF ALLERGEN [J].
BLEUMINK, E ;
BERRENS, L ;
YOUNG, E .
INTERNATIONAL ARCHIVES OF ALLERGY AND APPLIED IMMUNOLOGY, 1966, 30 (02) :132-&
[7]   ADVERSE REACTIONS TO FOOD [J].
BRUIJNZEELKOOMEN, C ;
ORTOLANI, C ;
AAS, K ;
BINDSLEVJENSEN, C ;
BJORKSTEN, B ;
MONERETVAUTRIN, D ;
WUTHRICH, B .
ALLERGY, 1995, 50 (08) :623-635
[8]   Fruit-pollen-latex cross-reactivity:: implication of profilin (Bet v 2) [J].
Díez-Gómez, ML ;
Quirce, S ;
Cuevas, M ;
Sánchez-Fernández, C ;
Baz, G ;
Moradiellos, FJ ;
Martínez, A .
ALLERGY, 1999, 54 (09) :951-961
[9]   Characterization of allergens in plant-derived spices: Apiaceae spices, pepper (Piperaceae), and paprika (bell peppers, Solanaceae) [J].
Ebner, C ;
Jensen-Jarolim, E ;
Leitner, A ;
Breiteneder, H .
ALLERGY, 1998, 53 :52-54
[10]   Tomato (Lycopersicon esculentum) allergens in pollen-allergic patients [J].
Foetisch, K ;
Son, DY ;
Altmann, F ;
Aulepp, H ;
Conti, A ;
Haustein, D ;
Vieths, S .
EUROPEAN FOOD RESEARCH AND TECHNOLOGY, 2001, 213 (4-5) :259-266