Structural, biological, and evolutionary relationships of plant food allergens sensitizing via the gastrointestinal tract

被引:145
作者
Mills, ENC
Jenkins, JA
Alcocer, MJC
Shewry, PR
机构
[1] Inst Food Res, Inst Food Res, Norwich NR4 7UA, Norfolk, England
[2] Univ Nottingham, Sch Biol Sci, Nottingham NG7 2RD, England
[3] Rothamsted Res, IACR Long Ashton Res Stn, Harpenden, Herts, England
基金
英国生物技术与生命科学研究理事会;
关键词
cupins; cysteine; prolamins; protease; protein families; structure;
D O I
10.1080/10408690490489224
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
The recently completed genome sequence of the model plant species Arabidopsis has been estimated to encode over 25,000 proteins, which, on the basis of their function, can be classified into structural and metabolic (the vast majority of plant proteins), protective proteins, which defend a plant against invasion by pathogens or feeding by pests, and storage proteins, which proved a nutrient store to support germination in seeds. It is now clear that almost all plant food allergens are either protective or storage proteins. It is also becoming evident that those proteins that trigger the development of an allergic response through the gastrointestinal tract belong primarily to two large protein superfamilies: (1) The cereal prolamin superfamily, comprising three major groups of plant food allergens, the 2S albumins, lipid transfer proteins, and cereal alpha-amylaseltrypsin inhibitors, which have related structures, and are stable to thermal processing and proteolysis. They include major allergens from Brazil nut, peanuts, fruits, such as peaches, and cereals, such as rice and wheat; (2) The cupin superfamily, comprising the major globulin storage proteins from a number of plant species. The globulins have been found to be allergens in plant foods, such as peanuts, soya bean, and walnut; (3) The cyteine protease C1 family, comprising the papain-like proteases from microbes, plants, and animals. This family contains two notable allergens that sensitize via the GI tract, namely actinidin from kiwi fruit and the soybean allergen, Gly m Bd 30k/P34. This study describes the properties, structures, and evolutionary relationships of these protein families, the allergens that belong to them, and discusses them in relation to the role protein structure may play in determining protein allergenicity.
引用
收藏
页码:379 / 407
页数:29
相关论文
共 216 条
  • [11] Lipid transfer protein: A pan-allergen in plant-derived foods that is highly resistant to pepsin digestion
    Asero, R
    Mistrello, G
    Roncarolo, D
    de Vries, SC
    Gautier, MF
    Ciurana, LF
    Verbeek, E
    Mohammadi, T
    Knul-Brettlova, V
    Akkerdaas, JH
    Bulder, I
    Aalberse, RC
    van Ree, R
    [J]. INTERNATIONAL ARCHIVES OF ALLERGY AND IMMUNOLOGY, 2000, 122 (01) : 20 - 32
  • [12] STRUCTURE OF ACTINIDIN, AFTER REFINEMENT AT 1.7-A RESOLUTION
    BAKER, EN
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 1980, 141 (04) : 441 - 484
  • [13] Identification of the glycosylation site of a major soybean allergen, Gly m Bd 30K
    Bando, N
    Tsuji, H
    Yamanishi, R
    Nio, N
    Ogawa, T
    [J]. BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 1996, 60 (02) : 347 - 348
  • [14] MOLECULAR ANALYSIS OF GAMMA-GLIADIN GENE FAMILIES AT THE COMPLEX GLI-1 LOCUS OF BREAD WHEAT (TRITICUM-AESTIVUM L)
    BARTELS, D
    ALTOSAAR, I
    HARBERD, NP
    BARKER, RF
    THOMPSON, RD
    [J]. THEORETICAL AND APPLIED GENETICS, 1986, 72 (06) : 845 - 853
  • [15] 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
    Bauer, L
    Ebner, C
    Hirschwehr, R
    Wuthrich, B
    Pichler, C
    Fritsch, R
    Scheiner, O
    Kraft, D
    [J]. CLINICAL AND EXPERIMENTAL ALLERGY, 1996, 26 (10) : 1161 - 1170
  • [16] STUDIES ON THE SPECIFICITY OF HUMAN IGE-ANTIBODIES TO THE PLANT PROTEASES PAPAIN AND BROMELAIN
    BAUR, X
    [J]. CLINICAL ALLERGY, 1979, 9 (05): : 451 - 457
  • [17] Soybean glycinin G1 acidic chain shares IgE epitopes with peanut allergen Ara h 3
    Beardslee, TA
    Zeece, MG
    Sarath, G
    Markwell, JP
    [J]. INTERNATIONAL ARCHIVES OF ALLERGY AND IMMUNOLOGY, 2000, 123 (04) : 299 - 307
  • [18] PCR CLONING AND EXPRESSION ANALYSIS OF CDNAS ENCODING CYSTEINE PROTEINASES FROM GERMINATING-SEEDS OF VICIA-SATIVA L
    BECKER, C
    FISCHER, J
    NONG, VH
    MUNITZ, K
    [J]. PLANT MOLECULAR BIOLOGY, 1994, 26 (04) : 1207 - 1212
  • [19] BEHNKE CA, 1988, BIOCHEM, V37, P15277
  • [20] Bewley J.D., 2013, SEEDS, DOI DOI 10.1007/978-1-4899-1002-8_1