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

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-amylase/trypsin 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.

Allergens↗

Cereal seed storage proteins: structures, properties and role in grain utilization.

Storage proteins account for about 50% of the total protein in mature cereal grains and have important impacts on their nutritional quality for humans and livestock and on their functional properties in food processing. Current knowledge of the structures and properties of the prolamin and globulin storage proteins of cereals and their mechanisms of synthesis, trafficking and deposition in the developing grain is briefly reviewed here. The role of the gluten proteins of wheat in determining the quality of the grain for breadmaking and how their amount and composition can be manipulated leading to changes in dough mixing properties is also discussed.

Consensus Sequence↗

The correlation between expression and localization of a foreign gene product in rice endosperm.

Glucagon-like peptide 1 (GLP-1) is a 30 amino acid peptide hormone involved in insulin stimulation that is dependent upon blood glucose levels. We have previously reported that when this short peptide gene was directly expressed under the control of a glutelin promoter and its signal peptide, it was not accumulated in transgenic rice seed due to gene silencing. However, when the modified GLP-1 (mGLP-1) gene was enlarged to 5xmGLP-1 (mGLPx5) by tandem repeat, no silencing was observed. The mGLPx5 peptide could be accumulated in rice seed and its localization was mainly limited to the endoplasmic reticulum (ER). We also investigated alternative cellular localization sites that would increase accumulation. The relationship between the expression level and localization was examined by attaching the chitinase signal peptide to mGLPx5 to direct it into the intercellular space (apoplast), or by expression as a fusion protein with glutelin by insertion into a variable region of the acidic subunit, thus directing the peptide to protein body II (PB II). Attachment of the KDEL ER retention signal to the 6xmGLP-1 (mGLPx6) or its fusion to the C-terminus of the 13 kDa prolamin directed the peptide to the ER or PB I, respectively. Unexpectedly, these results indicated that mGLPx5 without any signal except for the glutelin signal peptide was accumulated to the greatest extent in rice endosperm. It can thus be concluded that the ER is a suitable intracellular organelle for accumulation of mGLPx5 peptide.

Chitinases↗

In vitro proliferation of lymphocytes from celiac children and their first-degree relatives in response to wheat gliadin-derived peptides.

Evidence is accumulating which indicates that immune reactions to gliadins are involved in the pathogenesis of celiac disease, as humoral- and cell-mediated immune responses to gliadins have been demonstrated in the jejunal mucosa and the peripheral blood of patients. An abnormal specific immunological response to gliadins is demonstrated not only in celiac children but also in their first-degree relatives. Seventy-eight percent of celiac patients, and 67, 87, and 100% of their fathers, siblings, and mothers, respectively, have a peripheral blood lymphocyte population reacting in vitro with a proliferation response to at least one of four peptide mixtures obtained from bread and durum wheat gliadins using a procedure simulating in vivo protein digestion. The specificity of this immunological hyperresponsiveness against wheat gliadins is shown by two sets of data: (a) Lymphocytes from celiac children and their relatives were much less sensitive to peptides from rice prolamin and not at all sensitive to peptides from wheat albumins. (b) Only 7% of 30 adult controls had a proliferative response of their peripheral lymphocytes to wheat gliadin peptides. It is not known at this time if healthy relatives of celiac patients mount an immune response against the intestine in vivo. However, it is possible that the presence of lymphocytes reactive to wheat gliadin peptides in apparently healthy relatives of celiac patients may explain why these relatives develop histologic evidence of celiac disease when their gluten intake is increased (Doherty M, Barry RF. Lancet 1981;1:517-20).

Albumins↗

Analysis of avenin proteins and the expression of their mRNAs in developing oat seeds.

We have isolated and characterized cDNA clones encoding avenins, the prolamine storage proteins of oat seeds. Sequence analysis shows that avenins are a related group of polypeptides and that their mRNAs differ from each other by point mutations and small insertions and deletions. Avenin proteins have structural homology to the alpha/beta-gliadins and gamma-gliadins of wheat, the B-hordeins of barley, and the gamma-secalins of rye. Hybridization analysis of DNA from various diploid, tetraploid, and hexaploid oat species shows that the oat genome contains more globulin storage protein genes than avenin genes and that some restriction fragments containing these genes are conserved between species with common genomes. We estimate that there are 25 avenin genes and 50 globulin genes per haploid genome in Avena sativa and similar ratios of globulin to avenin genes in other Avena species. Avenin and globulin polypeptides begin to accumulate between 4 days and 6 days after anthesis. Messenger RNAs encoding avenin and globulin proteins become abundant 4 days after anthesis and reach peak concentrations at 8 days after anthesis. Avenin mRNAs are present in somewhat greater molar amounts than globulin mRNAs beginning at 4 days after anthesis. Because there is considerably more globulin than avenin in the mature oat seed, the expression of globulin and avenin genes may be regulated both transcriptionally and post-transcriptionally.

Amino Acid Sequence↗

Coeliac disease: characterisation of monoclonal antibodies raised against a synthetic peptide corresponding to amino acid residues 206-217 of A-gliadin.

A dodecapeptide of A-gliadin, which shares amino acid homologies with the E1b protein of adenovirus 12, was used to produce murine monoclonal antibodies. Five monoclonal antibodies were produced and were screened by enzyme linked immunosorbant assay, immunodot assay, and immunoblotting. The antibodies were tested against whole wheat gliadin and its alpha, beta, gamma, and omega subfractions, and the prolamins of rye, barley, oats, maize, millet, rice, and sorghum. Four of the five antibodies cross reacted with one or more of the coeliac non-toxic cereals--maize, millet, sorghum, and rice. The monoclonal antibody that did not cross react with these non-toxic cereals, did not recognize Frazer's fraction III, a peptic-tryptic digest of wheat gluten which is known to be toxic. The results suggest that the A-gliadin dodecapeptide shares a region of homology with cereals that do not exacerbate coeliac disease. This study does not support the hypothesis that prior infection with adenovirus 12 is a precipitating factor in coeliac disease.

Adenovirus E1B Proteins↗

Specificities of monoclonal antibodies to domain I of alpha-gliadins.

Eight monoclonal antibodies were raised against a sequenced 54-amino-acid peptide of alpha-gliadin, which is thought to exacerbate coeliac disease. Five of the antibodies cross-reacted with coeliac non-toxic cereals. Two of eight of the antibodies bound specifically to coeliac toxic prolamins. These two antibodies cross-reacted with high molecular weight gliadins, which are closely related to alpha-gliadins and whose toxicity to patients with coeliac disease is unclear. The antibodies were screened by enzyme-linked immunosorbent assay against three amino-acid-sequenced peptides of alpha-gliadin with single amino-acid differences. Differential binding of antibody WC2 suggested that this antibody binds in the region of amino-acid residue 36, a proline residue, where there may be an antigenic beta-reverse turn. This proline residue forms part of a tetrapeptide motif, QQQP, which is thought to be present in all coeliac-active peptides.

Animals↗

Native and artificial reticuloplasmins co-accumulate in distinct domains of the endoplasmic reticulum and in post-endoplasmic reticulum compartments.

We compared the subcellular distribution of native and artificial reticuloplasmins in endosperm, callus, and leaf tissues of transgenic rice (Oryza sativa) to determine the distribution of these proteins among endoplasmic reticulum (ER) and post-ER compartments. The native reticuloplasmin was calreticulin. The artificial reticuloplasmin was a recombinant single-chain antibody (scFv), expressed with an N-terminal signal peptide and the C-terminal KDEL sequence for retrieval to the ER (scFvT84.66-KDEL). We found that both molecules were distributed in the same manner. In endosperm, each accumulated in ER-derived prolamine protein bodies, but also in glutelin protein storage vacuoles, even though glutelins are known to pass through the Golgi apparatus en route to these organelles. This finding may suggest that similar mechanisms are involved in the sorting of reticuloplasmins and rice seed storage proteins. However, the presence of reticuloplasmins in protein storage vacuoles could also be due to simple dispersal into these compartments during protein storage vacuole biogenesis, before glutelin deposition. In callus and leaf mesophyll cells, both reticuloplasmins accumulated in ribosome-coated vesicles probably derived directly from the rough ER.

Calcium-Binding Proteins↗

Gluten determination by gliadin enzyme-linked immunosorbent assay kit: interlaboratory study.

An interlaboratory study with 10 participants was performed to obtain validation and performance data for an enzyme-linked immunosorbent assay (ELISA) kit developed for quantitative gluten determination in foods. The ELISA kit used for this study is based on 2 monoclonal and 1 polyclonal antibody developed by Immunotech, a Beckman Coulter Co. This kit did not show any false positive results or cross-reactivity with oat, rice, maize, and buckwheat. The gliadin standard from the Working Group on Prolamin Analysis and Toxicity was included in the kit as reference material for calibration. All participants obtained a gliadin ELISA kit with Standard Operational Procedure and a form for recording test results. The study included 13 samples labeled as "gluten-free" and 2 samples spiked by wheat flour. Seven samples had gliadin content below the limit of quantitation (LOQ) of the method, and 1 sample exceeded the highest calibration level. Gliadin content in the range from 10 to 157 mg/kg (1st day) and from 11 to 183 mg/kg (2nd day) was found in 7 samples (including 2 spiked samples). Results of these samples were used for further statistical analysis and evaluation. The Cochran, Dixon, and Mandel statistical tests were applied for detection of outliers. The LOQ of the kit was estimated.

Avena↗

[Primary structure of the "fast" component of avenin (Avena sativa L].

A procedure for the isolation and sequence analysis of the "fast" avenin component (N9) from the oat (Avena sativa L., cv. Narymsky 943) is described. Component N9 was prepared by an ion-exchange high-performance liquid chromatography on a strong cation exchange column type Mono S (Pharmacia, Sweden) in 4 M urea, pH 3.5, with a linear gradient of NaCl. A polypeptide chain of avenin N9 was reconstructed by the CNBr and tryptic peptides on a model 470A protein gas-phase sequencer (Applied Biosystems, USA). A good yield of tryptic peptides were obtained by an enzymatic hydrolysis of avenin N9 preliminary immobilized on Thiopropyl-Sepharose 6B (Pharmacia, Sweden) at cysteine residues. Avenin N9 consists of 182 amino acid residues end exhibits the features common for all the known prolamins.

Amino Acid Sequence↗

Evaluation of techniques of controlling exocrine drainage after segmental pancreatectomy in dogs. Implications for pancreatic transplantation.

Pancreatic transplantation is hampered by difficulties in controlling exocrine drainage. Methods of controlling exocrine drainage were assessed in 30 dogs receiving right lobe pancreatectomy. In the sham group, laparotomy and dissection of the pancreas were performed. In the others, the duct was either left open, ligated, anastomosed to jejunal mucosa, or injected with 1.5 mL of either silicone rubber, Neoprene, or Prolamine. Serial serum glucose and amylase levels were obtained at regular intervals and pancreatic biopsies were performed at two and eight weeks for examination. Glucose homeostasis was maintained throughout the study period. All animals developed severe pancreatitis as shown by hyperamylasemia by the second postoperative day, which resolved in most animals by the tenth to 14th day. Animals were free of ascites, pancreatic abscesses, and pseudocysts. All methods of ductal obstruction as well as the open duct drainage led to islet and acinar fragmentation and fibrosis. Endocrine function was preserved in all groups. In three animals with patent ductal-jejunal anastomoses, the pancreas appeared normal. Duct-to-jejunum anastomosis was the preferred method to preserve pancreatic function and morphology.

Amylases↗

Variety identification in maize lines via capillary electrophoresis of zeins in isoelectric acidic buffers.

Zeins (the prolamins or seed storage proteins in maize) have been used to characterize and identify different genotypes. Zeins were fractionated by capillary zone electrophoresis in acidic, amphoteric buffers, which represent a medium of moderate conductivity and are thus compatible with higher voltage gradients. The running buffer consisted of 40 mM isoelectric aspartic acid, in presence of 6 M urea and 0.5% hydroxyethyl cellulose (apparent pH: 3.8; pI in the absence of urea: 2.77). Thirty-one different zein peaks were mapped out of a total of 21 different maize genotypes. Each of them typically exhibited seven to twelve peaks, with some genotypes showing up to 20 zein bands. Due to slightly changing elution times, caused by a lack of reproducibility of the electroendoosmotic flow in uncoated silica surfaces, correct peak assignment and alignment among different runs was obtained by multivariate statistical analysis. The present method compares well, both in resolution and total number of peaks, with current protocols adopted for screening of maize inbreds, which consist of isoelectric focusing in agarose gels.

Buffers↗

Functional and electrophoretic characteristics of faba bean (Vicia faba) flour proteins as affected by germination.

Faba beans (Vicia faba) were germinated at room temperature for 3 and 6 days respectively. The effect of germination on the protein fractions, protein solubility index, PAGE pattern and some functional properties i.e. emulsification capacity (EC), foaming capacity (FC), foam stability (FS), water and fat absorption capacities of the flour was studied. Germination decreased albumins, globulins and prolamins at different levels but non protein nitrogen and glutelins were increased. The protein solubility index was high at both extreme pH values with an isoelectric point (IP) at pH of 4.4-4.5. The solubility of the protein slightly increased due to germination at all the pH values. PAGE pattern revealed on obvious dissociation and utilization for both fast and slow moving protein fractions during germination. Emulsification and foaming properties vs pH profile were similar to the pattern of solubility vs pH. Both properties were high at acidic and alkaline pH's and the minimum values were at pH 4 to 5. Germination process improved EC, FC and FS of the flour in comparison with that of dry bean flour. Water absorption of faba bean flours was improved during germination but the fat absorption markedly decreased.

Dietary Fats↗

The identification of foam-forming soluble proteins from wheat (Triticum aestivum) dough.

Proteomic methods have been used to identify foam-forming soluble proteins from dough that may play an important role in stabilising gas bubbles in dough, and hence influence the crumb structure of bread. Proteins from a soluble fraction of dough (dough liquor) or dough liquor foam have been separated by two-dimensional gel electrophoresis, and 42 identified using a combination of matrix-assisted laser desorption/ionization-time of flight and quadrupole-time of flight analyses. Major polypeptide components included beta-amylase, tritin and serpins, with members of the alpha-amylase/trypsin inhibitor family being particularly abundant. Neither prolamin seed storage proteins nor the surface-active protein puroindoline were found. Commonly used dough ingredients (NaCl, Na L-ascorbate) had only a minor effect on the 2-DE protein profiles of dough liquor, of which one of the more significant was the loss of 9 kDa nonspecific lipid transfer protein. Many proteins were lost in dough liquor foam, particularly tritin, whilst a number of alpha-amylase inhibitors were more dominant, suggesting that these are amongst the most strongly surface-active proteins in dough liquor. Such proteins may play a role determining the ability of the aqueous phase of doughs, as represented by dough liquor, to form an elastic interface lining the bubbles, and hence maintain their integrity during dough proving.

Ascorbic Acid↗

Proteomic analysis of the expression of proteins related to rice quality during caryopsis development and the effect of high temperature on expression.

Proteins are essential to rice caryopsis development and quality formation. High temperature is an important environmental factor, which may decrease grain quality. In the present study rice caryopsis proteins were profiled by two-dimensional polyacrylamide gel electrophoresis, and differentially expressed proteins were analyzed by liquid chromatography/tandem mass spectrometry. Expressions of more than 400 polypeptide spots during caryopsis development, in response to temperature treatments or between varieties were monitored. Among them, more than 70 differentially expressed polypeptides were analyzed by liquid chromatography/tandem mass spectrometry. We identified 54 proteins with known functions. Of these, 21 were involved with carbohydrate metabolism, 14 with protein synthesis and sorting, and 9 with stress responses. Waxy (Wx) proteins and glutelins were the most significant spots, which increased significantly during development. Allergen-like proteins, PPDK and NADH-SDH, also were expressed during development, implying their physiological roles in caryopsis. Expression of large isoforms of Wx proteins was correlated with the amylose content of rice caryopses. One protein with high GC content in its DNA sequence was correlated with the chalky trait of kernels. High temperature (35/30 degrees C) decreased the expression of Wx proteins, allergen-like proteins, and elongation factor 1beta, but increased the expression of small heat shock proteins (sHSP), glyceraldehyde-3-phosphate dehydrogenase, and prolamin. sHSP was positively correlated with the appearance of chalky kernels. During development, glutelins were phosphorylated and glycosylated, indicating that these molecules were post-translationally modified. Possible functions of the expression of candidate proteins on the grain quality are discussed.

Chromatography, Liquid↗

Trypanosoma cruzi: molecular cloning of a gene coding for a putative vacuolar protein.

We describe the characterization of Tc38, a Trypanosoma cruzi gene coding for a 337-amino-acid protein with a predicted molecular mass of 38 kDa. Tc38 presents similarities to the plant storage vacuolar protein gamma-3-hordein involved in the transport and targeting of prolamins to the vacuole of developing barley endosperm. Western blot analysis using a polyclonal antiserum against recombinant Tc38 revealed that the protein is differentially expressed in the different life stages of the parasite, showing a higher expression in the epimastigote and tripomastigote stages. Immunofluorescence studies suggest that the protein is located in putative vacuolar structures in epimastigotes. The functionality of this protein in T. cruzi remains to be elucidated.

Animals↗

Expression of maize gamma zein C-terminus in Escherichia coli.

Prolamins containing a highly conserved cysteine-rich C-terminal domain have been poorly expressed as soluble protein in model systems such as Escherichia coli. Possible reasons have included a combination of the reducing environment of the bacterial cytoplasm and protein secondary structure. Using a bacterial thioredoxin fusion expression system, full-length native gamma zein, native gamma zein C-terminus, and modified gamma zein C-terminus, containing 13 amino acid changes, were found to accumulate up to 58, 50, and 42% of the total cellular protein, respectively. The native gamma zein C-terminus fusion protein was six times more soluble (70%) than the full-length fusion protein (12%), four times more soluble than the N-terminus (19%), and eight times more soluble than the modified C-terminus (9%). The modified C-terminal domain contained amino acid changes that improved the lysine, isoleucine, and tryptophan content, while removing two evolutionarily conserved cysteines and one nonconserved cysteine. Expression of the native C-terminal domain without thioredoxin resulted in decreased solubility (13%) and decreased expression (8%). In contrast, coexpression with thioredoxin resulted in a sevenfold increase in solubility (86%). These results suggest that insolubility of full-length gamma zein results from structural interactions of the N-terminus and that solubility of the C-terminal domain is dependent on proper disulfide bond formation. The ability to express the C-terminal domain of gamma zein as soluble protein should allow future identification of important structural elements in gamma zein and similar proteins.

Amino Acid Sequence↗