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首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >Relationship between protein digestibility and allergenicity: Comparisons of pepsin and cathepsin
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Relationship between protein digestibility and allergenicity: Comparisons of pepsin and cathepsin

机译:蛋白质消化率和致敏性之间的关系:胃蛋白酶和组织蛋白酶的比较

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An association between protein allergenicity and resistance to pepsin digestion in the gastrointestinal tract has been proposed. However, although widely accepted, such an association is inconsistent with known labile allergens and resistant nonallergens. Given the central role of antigen presenting cells, and in particular dendritic cells (DC), in the development of allergic responses, the stability of allergens to intracellular processing may be more relevant than resistance to extracellular pepsin digestion. We have characterised the expression by DC of cathepsins (proteolytic enzymes), and compared the proteolytic activity of the most highly expressed cathepsin with pepsin for a range of 9 allergens and 4 putative nonallergens. Cathepsin expression in bone marrow-derived DC (BM-DC) derived from BALB/c strain mice was characterised by flow cytometry; cathepsins D, E and S were identified, with cathepsin D being the most highly expressed. Digestion studies revealed that the majority of allergens (5/9) were pepsin resistant, whereas non-allergens (3/4) were labile. If the generation of pepsin-resistant fragments was considered as a feature of allergenicity, this increased to 7/9 allergens and 4/4 nonallergens. In contrast, most of the proteins examined were resistant to cathepsin digestion, with significant digestion recorded for only 2/9 allergens and 2/4 non-allergens. Chemical reduction (to mimic intracellular reducing conditions) increased the susceptibility of proteins to digestion by cathepsins, but did not improve discrimination between allergens and nonallergens on this basis. These data confirm that there is a general relationship between resistance to digestion with pepsin and allergenicity. The relationship is not absolute, but the information gained from this characteristic does provide useful information in a weight of evidence approach for allergenicity assessment. The most abundant cathepsin detected in antigen processing BM-DC, cathepsin D, is not an appropriate substitute for pepsin. The hypothesis that pepsin stability may be a surrogate for stability to digestion within DC may still hold true, but consideration of a single enzyme in this context is possibly an oversimplification.
机译:已经提出蛋白质过敏性与胃肠道对胃蛋白酶消化的抗性之间的关联。然而,尽管这种联系被广泛接受,但与已知的不稳定变应原和耐药性非变应原不一致。考虑到抗原呈递细胞,特别是树突状细胞(DC)在过敏反应发展中的核心作用,过敏原对细胞内加工的稳定性可能比对细胞外胃蛋白酶消化的抵抗力更重要。我们已经表征了组织蛋白酶(蛋白水解酶)的DC表达,并比较了表达最高的组织蛋白酶和胃蛋白酶对9种过敏原和4种假定非过敏原的蛋白水解活性。通过流式细胞术表征了组织蛋白酶在BALB / c品系小鼠骨髓来源的DC(BM-DC)中的表达。组织蛋白酶D,E和S被鉴定,其中组织蛋白酶D是最高度表达的。消化研究表明,大多数过敏原(5/9)对胃蛋白酶具有抵抗力,而非过敏原(3/4)不稳定。如果胃蛋白酶抗性片段的产生被认为是变应原性的特征,则它增加到7/9变应原和4/4非变应原。相反,大多数检测的蛋白质对组织蛋白酶消化均具有抵抗力,仅2/9变应原和2/4非变应原记录有明显的消化。化学还原(模拟细胞内还原条件)增加了组织蛋白酶对蛋白质消化的敏感性,但在此基础上并没有改善过敏原和非过敏原之间的区别。这些数据证实胃蛋白酶对消化的抗性和致敏性之间存在一般关系。这种关系不是绝对的,但是从此特性获得的信息确实可以通过权衡证据的方式为过敏性评估提供有用的信息。在抗原加工BM-DC中检测到的最丰富的组织蛋白酶,组织蛋白酶D,不是胃蛋白酶的适当替代品。胃蛋白酶稳定性可能是DC中消化稳定性替代指标的假设可能仍然成立,但是在这种情况下考虑单一酶可能过于简化。

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