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海鲜和爬行动物 α-和 β-副肌球蛋白的比较研究。

Comparative studies of seafood and reptile α- and β-parvalbumins.

机构信息

Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, Michigan, USA.

Department of Chemistry and Biochemistry, University of South Carolina, Columbia, South Carolina, USA.

出版信息

Protein Sci. 2024 Dec;33(12):e5226. doi: 10.1002/pro.5226.

Abstract

Small calcium-binding proteins such as parvalbumins (PVs) are major seafood and fish allergens. However, the impact of structural changes on their capacity to bind IgE has not been studied in detail. Therefore, fish and reptilian PVs, as well as human α-PV, were selected for biochemical, structural, and IgE binding studies. Likely due to their high solubility, crystallization proved difficult, so additional techniques were used to promote crystallization of the proteins. Novel crystal structures were determined for human PV, cod allergen Gad m 1.0201, saltwater crocodile allergen Cro p 1.0101, and the α-PV from thornback ray. β-PVs are considered the major fish allergens, while α-PVs are rarely categorized as allergens. To explain these differences, the results of structural and IgE binding studies were combined. This approach allowed us to provide new insight into IgE binding epitopes present on PVs, focusing on cross-reactivity among the selected α- and β-PVs. In addition, we have shown that these proteins display remarkable thermal stability across a range of pH conditions, which is relevant in the case of food allergens and food processing. Moreover, it is shown that the presence of calcium cations is critical for stability of the studied PVs via their protein folding, which has an impact on the formation of IgE binding epitopes. These studies shows the stability of fish and reptile PV allergens, and it allows for further evaluation of their IgE cross-reactivity.

摘要

小的钙结合蛋白,如副肌球蛋白(PVs),是主要的海鲜和鱼类过敏原。然而,结构变化对其结合 IgE 的能力的影响尚未进行详细研究。因此,选择鱼类和爬行动物的 PV 以及人类的α-PV 进行生化、结构和 IgE 结合研究。可能由于其高溶解性,结晶证明很困难,因此使用了其他技术来促进蛋白质的结晶。确定了人类副肌球蛋白、鳕鱼过敏原 Gad m 1.0201、咸水鳄过敏原 Cro p 1.0101 和黄鳐的α-PV 的新晶体结构。β-PVs 被认为是主要的鱼类过敏原,而α-PVs 很少被归类为过敏原。为了解释这些差异,将结构和 IgE 结合研究的结果结合起来。这种方法使我们能够深入了解副肌球蛋白上存在的 IgE 结合表位,重点研究所选的α-PV 和β-PV 之间的交叉反应性。此外,我们还表明,这些蛋白质在一系列 pH 条件下显示出显著的热稳定性,这在食物过敏原和食物加工中是相关的。此外,研究表明,钙阳离子的存在通过其蛋白质折叠对研究的 PV 的稳定性至关重要,这对 IgE 结合表位的形成有影响。这些研究显示了鱼类和爬行动物副肌球蛋白过敏原的稳定性,并允许进一步评估它们的 IgE 交叉反应性。

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