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禾本科花粉第4组过敏原的多种交叉反应性:百慕大草同种变应原Cyn d 4的晶体学研究

Various cross-reactivity of the grass pollen group 4 allergens: crystallographic study of the Bermuda grass isoallergen Cyn d 4.

作者信息

Huang Tse-Hao, Peng Ho-Jen, Su Song-Nan, Liaw Shwu-Huey

机构信息

Department of Life Sciences, National Yang-Ming University, Taipei 11221, Taiwan.

出版信息

Acta Crystallogr D Biol Crystallogr. 2012 Oct;68(Pt 10):1303-10. doi: 10.1107/S0907444912027552. Epub 2012 Sep 13.

DOI:10.1107/S0907444912027552
PMID:22993084
Abstract

The structure of Cyn d 4, the group 4 allergen from Bermuda grass, is reported at 2.15 Å resolution and is the first crystal structure of a naturally isolated pollen allergen. A conserved N-terminal segment that is only present in the large isoallergens forms extensive interactions with surrounding residues and hence greatly enhances the structural stability of the protein. Cyn d 4 contains an FAD cofactor that is covalently linked to His88 and Cys152. To date, all identified bicovalent flavoproteins are oxidases and their substrates are either sugars or secondary metabolites. A deep large hydrophobic substrate-binding cleft is present. Thus, Cyn d 4 may be an oxidase that is involved in the biosynthesis of a pollen-specific metabolite. Cyn d 4 shares ~70% sequence identity with the Pooideae group 4 allergens. Various cross-reactivities between grass pollen group 4 allergens have previously been demonstrated using sera from allergic patients. The protein surface displays an unusually large number of positively charged clusters, reflecting the high pI of ~10. 38 decapeptides that cover the solvent-accessible sequences did not show any significant IgE-binding activity using sera with high Cyn d 4 reactivity from four patients, suggesting that the IgE epitopes of Cyn d 4 are predominantly conformational in nature. Several group 4 structures were then modelled and their potential cross-reactive and species-specific IgE epitopes were proposed.

摘要

报道了来自百慕大草的4组变应原Cyn d 4的结构,分辨率为2.15 Å,这是天然分离的花粉变应原的首个晶体结构。仅存在于大同种异型变应原中的保守N端片段与周围残基形成广泛相互作用,从而大大增强了蛋白质的结构稳定性。Cyn d 4含有一个与His88和Cys152共价连接的FAD辅因子。迄今为止,所有已鉴定的双共价黄素蛋白都是氧化酶,其底物要么是糖类,要么是次生代谢产物。存在一个深的大疏水底物结合裂隙。因此,Cyn d 4可能是一种参与花粉特异性代谢产物生物合成的氧化酶。Cyn d 4与早熟禾亚科4组变应原具有约70%的序列同一性。先前已使用过敏患者的血清证明了草花粉4组变应原之间的各种交叉反应性。蛋白质表面显示出异常大量的带正电荷簇,反映出约10.38的高pI。使用来自4名患者的具有高Cyn d 4反应性的血清,覆盖溶剂可及序列的38个十肽未显示任何显著的IgE结合活性,这表明Cyn d 4的IgE表位在本质上主要是构象性的。然后对几种4组结构进行了建模,并提出了它们潜在的交叉反应性和物种特异性IgE表位。

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