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椰果 1 号的克隆、表达及免疫学特性,椰子花粉中的首个主要过敏原。

Cloning, expression and immunological characterisation of Coc n 1, the first major allergen from Coconut pollen.

机构信息

Division of Plant Biology, Bose Institute, 93/1, Acharya Prafulla Chandra Road, Kolkata 700009, India; Chemistry Research Laboratory, 12 Mansfield Road, OX4 4TG, Oxford, United Kingdom.

Division of Plant Biology, Bose Institute, 93/1, Acharya Prafulla Chandra Road, Kolkata 700009, India.

出版信息

Mol Immunol. 2021 Mar;131:33-43. doi: 10.1016/j.molimm.2020.12.026. Epub 2021 Jan 21.

Abstract

Coconut pollen has been documented to be a major contributor to the aeroallergen load in India, causing respiratory allergy in a large cohort of susceptible individuals. Here, we report the identification of the first major allergen from Coconut pollen, Coc n 1. The full-length sequence of the allergen was determined from previously identified peptides and overexpressed in E. coli. Recombinant Coc n 1 folded into a trimer and was found to possess allergenicity equivalent to its natural counterpart. Proteolytic processing of Coc n 1 led to the formation of an immunodominant ∼20 kDa C-terminal subunit and the site of cleavage was determined by amino acid microsequencing. Five linear IgE binding epitopes were predicted and mapped on the homology modelled structure of Coc n 1. Amongst three immunodominant epitopes, two were present towards the C-terminal end. Coc n 1 was found to belong to the highly diverse cupin superfamily and mimics its structure with known 7S globulin or vicilin allergens but lacks sequence similarity. Using sequence similarity networks, Coc n 1 clustered as a separate group containing unannotated cupin domain proteins and did not include known vicilin allergens except Gly m Bd 28 kDa, a Soybean major allergen. 7S globulins are major storage proteins and food allergens, but presence of such protein in pollen grains is reported for the first time. Further study on Coc n 1 may provide insights into its function in pollen grains and also in the development of immunotherapy to Coconut pollen allergy.

摘要

椰花粉已被证实是印度空气过敏原负荷的主要贡献者,导致大量易感个体发生呼吸道过敏。在这里,我们报告了从椰花粉中鉴定出的第一个主要过敏原 Coc n 1。通过先前鉴定的肽段确定了过敏原的全长序列,并在大肠杆菌中过表达。重组 Coc n 1 折叠成三聚体,并且具有与其天然对应物相当的变应原性。Coc n 1 的蛋白水解处理导致形成免疫显性约 20 kDa 的 C 末端亚基,并且通过氨基酸微测序确定了切割位点。预测了五个线性 IgE 结合表位,并在 Coc n 1 的同源建模结构上进行了映射。在三个免疫显性表位中,有两个位于 C 末端。Coc n 1 属于高度多样化的 cupin 超家族,其结构与已知的 7S 球蛋白或 vicilin 过敏原相似,但缺乏序列相似性。使用序列相似性网络,Coc n 1 聚类为一个单独的组,其中包含未注释的 cupin 结构域蛋白,除了 Gly m Bd 28 kDa 之外,不包括已知的 vicilin 过敏原,Gly m Bd 28 kDa 是大豆的主要过敏原。7S 球蛋白是主要的储存蛋白和食物过敏原,但花粉粒中存在这种蛋白尚属首次报道。对 Coc n 1 的进一步研究可能为其在花粉粒中的功能以及椰花粉过敏的免疫治疗发展提供深入了解。

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