豌豆和扁豆7S球蛋白晶体结构与比较免疫球蛋白表位定位

IF 4.1 Q2 FOOD SCIENCE & TECHNOLOGY Food Chemistry Molecular Sciences Pub Date : 2022-12-30 DOI:10.1016/j.fochms.2022.100146
Kelly A. Robinson , Antony D. St-Jacques , Isabella D. Bakestani, Benjamin A.G. Beavington, Michele C. Loewen
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引用次数: 2

摘要

豆类是一种负担得起的高蛋白、营养丰富的食物来源。然而,绝大多数豆类作物含有已知易感个体的过敏原蛋白质。其中包括来自7S球蛋白家族的蛋白质,它构成了绝大多数种子储存蛋白。本文首次报道了豌豆(Pisum sativum L.)和扁豆(Lens culinaris Medicus)中7S球蛋白的晶体结构,包括豌豆维西林、豌豆维西林和扁豆维西林。所有这三种结构都保持预期的7S球蛋白折叠,具有三聚体四元结构和由β-桶N和c模块组成的单体。序列差异对不同晶体空间群结构和堆积的潜在影响被注意到,与种子沉积时堆积的潜在关联。对获得的晶体结构进行绘图,突出了豌豆、扁豆、花生和大豆之间显著的Ig表位重叠,以及整个种子储存蛋白的显著覆盖,强调了解决食物过敏的挑战。如何将最近开发的生物制剂精制得更有效,或者如何在植物中对这些种子储存蛋白进行修饰以降低免疫反应性,这些都是未来的挑战。由于豆类是一种负担得起的高蛋白、营养丰富的食物来源,这项工作将使全球粮食安全和人类健康方面的重要研究能够持续进行。
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Pea and lentil 7S globulin crystal structures with comparative immunoglobulin epitope mapping

Legumes represent an affordable high protein, nutrient dense food source. However, the vast majority of legume crops contain proteins that are known allergens for susceptible individuals. These include proteins from the 7S globulin family, which comprise a vast majority of seed storage proteins. Here, the crystal structures of 7S globulins from Pisum sativum L. (pea) and Lens culinaris Medicus (lentil) are presented for the first time, including pea vicillin and convicilin, and lentil vicilin. All three structures maintain the expected 7S globulin fold, with trimeric quaternary structure and monomers comprised of β-barrel N- and C-modules. The potential impact of sequence differences on structure and packing in the different crystal space groups is noted, with potential relevance to packing upon seed deposition. Mapping on the obtained crystal structures highlights significant Ig epitope overlap between pea, lentil, peanut and soya bean and significant coverage of the entire seed storage protein, emphasizing the challenge in addressing food allergies. How recently developed biologicals might be refined to be more effective, or how these seed storage proteins might be modified in planta to be less immuno-reactive remain challenges for the future. With legumes representing an affordable, high protein, nutrient dense food source, this work will enable important research in the context of global food security and human health on an ongoing basis.

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来源期刊
Food Chemistry Molecular Sciences
Food Chemistry Molecular Sciences Agricultural and Biological Sciences-Food Science
CiteScore
6.00
自引率
0.00%
发文量
83
审稿时长
82 days
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