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斜带髭鲷主要过敏原——肌钙蛋白的纯化、鉴定及晶体结构。

Purification, Characterization, and Crystal Structure of Parvalbumins, the Major Allergens in Mustelus griseus.

机构信息

College of Food and Biological Engineering , Jimei University , Xiamen , Fujian 361021 , China.

Hefei National Laboratory for Physical Sciences at Microscale, CAS Key Laboratory of Innate Immunity and Chronic Disease, School of Life Sciences and Medical Center , University of Science & Technology of China , Hefei 230007 , China.

出版信息

J Agric Food Chem. 2018 Aug 1;66(30):8150-8159. doi: 10.1021/acs.jafc.8b01889. Epub 2018 Jul 17.

Abstract

Fish play important roles in human nutrition and health, but also trigger allergic reactions in some population. Parvalbumin (PV) represents the major allergen of fish. While IgE cross-reactivity to PV in various bony fish species has been well characterized, little information is available about allergens in cartilaginous fish. In this study, two shark PV isoforms (named as SPV-I and SPV-II) from Mustelus griseus were purified. Their identities were further confirmed by mass spectroscopic analysis. IgE immunoblot analysis showed that sera from fish-allergic patients reacted to both SPV-I and SPV-II, but the majority of sera reacted more intensely to SPV-I than SPV-II. Thermal denaturation monitored by CD spectrum showed that both of the SPV allergens are highly thermostable. SPV-I maintained its IgE-binding capability after heat denaturation, while the IgE-binding capability of SPV-II was reduced. The results of crystal structure showed that SPV-I and SPV-II were similar in their overall tertiary structure, but their amino acid sequences shared lower similarities, indicating that the differences in the IgE-binding capabilities of SPV-I and SPV-II might be due to differential antigen epitopes in these two isoforms.

摘要

鱼类在人类营养和健康中扮演着重要的角色,但也会引发一些人群的过敏反应。副肌球蛋白(PV)是鱼类的主要过敏原。虽然各种硬骨鱼类中的 PV IgE 交叉反应已得到很好的描述,但软骨鱼类中的过敏原信息却很少。在这项研究中,从灰星鲨中纯化了两种鲨鱼副肌球蛋白同工型(命名为 SPV-I 和 SPV-II)。通过质谱分析进一步确认了它们的身份。免疫印迹分析显示,鱼类过敏患者的血清与 SPV-I 和 SPV-II 均发生反应,但大多数血清对 SPV-I 的反应强度大于 SPV-II。通过 CD 光谱监测的热变性显示,这两种 SPV 过敏原均具有高度热稳定性。SPV-I 在热变性后仍保持其 IgE 结合能力,而 SPV-II 的 IgE 结合能力降低。晶体结构的结果表明,SPV-I 和 SPV-II 在整体三级结构上相似,但它们的氨基酸序列共享较低的相似性,表明 SPV-I 和 SPV-II 的 IgE 结合能力的差异可能是由于这两种同工型中抗原表位的不同。

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