Suppr超能文献

脊椎动物和无脊椎动物的同源原肌球蛋白:用于新型动物食品原肌球蛋白致敏性评估的功能性生物测定中的重组校准蛋白。

Homologous tropomyosins from vertebrate and invertebrate: Recombinant calibrator proteins in functional biological assays for tropomyosin allergenicity assessment of novel animal foods.

作者信息

Klueber Julia, Costa Joana, Randow Stefanie, Codreanu-Morel Françoise, Verhoeckx Kitty, Bindslev-Jensen Carsten, Ollert Markus, Hoffmann-Sommergruber Karin, Morisset Martine, Holzhauser Thomas, Kuehn Annette

机构信息

Department of Infection and Immunity, Luxembourg Institute of Health, Esch-sur-Alzette, Luxembourg.

Department of Dermatology and Allergy Center, Odense Research Center for Anaphylaxis, University of Southern Denmark, Odense C, Denmark.

出版信息

Clin Exp Allergy. 2020 Jan;50(1):105-116. doi: 10.1111/cea.13503. Epub 2019 Oct 11.

Abstract

BACKGROUND

Novel foods may provide new protein sources for a growing world population but entail risks of unexpected food-allergic reactions. No guidance on allergenicity assessment of novel foods exists, while for genetically modified (GM) crops it includes comparison of sequence identity with known allergens, digestibility tests and IgE serum screening.

OBJECTIVE

As a proof of concept, to evaluate non-/allergenic tropomyosins (TMs) regarding their potential as new calibrator proteins in functional biological in vitro assays for the semi-quantitative allergy risk assessment of novel TM-containing animal foods with mealworm TM as an example.

METHODS

Purified TMs (shrimp, Penaeus monodon; chicken Gallus gallus; E coli overexpression) were compared by protein sequencing, circular dichroism analysis and in vitro digestion. IgE binding was quantified using shrimp-allergic patients' sera (ELISA). Biological activities were investigated (skin testing; titrated basophil activation tests, BAT), compared to titrated biological mediator release using humanized rat basophil leukaemia (RBL) cells.

RESULTS

Shrimp and chicken TMs showed high sequence homology, both alpha-helical structures and thermal stability. Shrimp TM was stable during in vitro gastric digestion, chicken TM degraded quickly. Both TMs bound specific IgE from shrimp-allergic patients (significantly higher for shrimp TM), whereas skin reactivity was mostly positive with only shrimp TM. BAT and RBL cell assays were positive with shrimp and chicken TM, although at up to 100- to 1000-times lower allergen concentrations for shrimp than chicken TM. In RBL cell assays using both TM as calibrators, an activation of effector cells by mealworm TM similar to that by shrimp TM confirmed the already reported high allergenic potency of mealworm TM as a novel protein source.

CONCLUSIONS & CLINICAL RELEVANCE: According to current GM crops' allergenicity assessment, non-allergenic chicken TM could falsely be considered an allergen on a weight-of-evidence approach. However, calibrating allergenic potency in functional BAT and RBL cell assays with clinically validated TMs allowed for semi-quantitative discrimination of novel food protein's allergenicity. With TM calibration as a proof of concept, similar systems of homologous protein might be developed to scale on an axis of allergenicity.

摘要

背景

新型食品可为不断增长的世界人口提供新的蛋白质来源,但存在引发意外食物过敏反应的风险。目前尚无关于新型食品致敏性评估的指导方针,而对于转基因作物,其评估内容包括与已知过敏原的序列同一性比较、消化性测试和IgE血清筛查。

目的

作为概念验证,以黄粉虫原肌球蛋白为例,评估非致敏性/致敏性原肌球蛋白(TMs)作为新型含TM动物食品半定量过敏风险评估功能性生物体外检测新校准蛋白的潜力。

方法

通过蛋白质测序、圆二色性分析和体外消化对纯化的TMs(虾,斑节对虾;鸡,原鸡;大肠杆菌过表达)进行比较。使用虾过敏患者血清(ELISA)对IgE结合进行定量。与使用人源化大鼠嗜碱性粒细胞白血病(RBL)细胞滴定生物介质释放相比,研究了生物活性(皮肤试验;滴定嗜碱性粒细胞活化试验,BAT)。

结果

虾和鸡的TMs显示出高度的序列同源性、α螺旋结构和热稳定性。虾TM在体外胃消化过程中稳定,鸡TM迅速降解。两种TMs均能结合虾过敏患者的特异性IgE(虾TM的结合力明显更高),而皮肤反应大多仅虾TM呈阳性。虾和鸡TM的BAT和RBL细胞检测均呈阳性,尽管虾的过敏原浓度比鸡TM低100至1000倍。在使用两种TM作为校准物的RBL细胞检测中,黄粉虫TM对效应细胞的激活与虾TM相似,证实了已报道的黄粉虫TM作为新型蛋白质来源的高致敏性。

结论与临床意义

根据目前转基因作物的致敏性评估,非致敏性鸡TM在证据权重法下可能被错误地视为过敏原。然而,在功能性BAT和RBL细胞检测中用临床验证的TM校准致敏性,可对新型食品蛋白质的致敏性进行半定量区分。以TM校准作为概念验证,可能会开发类似的同源蛋白系统,以在致敏性轴上进行扩展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29ad/6973240/54feb6a2e8ce/CEA-50-105-g001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验