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第13组禾本科过敏原:不同禾本科物种之间的结构变异性及蛋白水解稳定性分析

Group 13 grass allergens: structural variability between different grass species and analysis of proteolytic stability.

作者信息

Petersen A, Suck R, Hagen S, Cromwell O, Fiebig H, Becker W M

机构信息

Forschungszentrum Borstel, Borstel; and Allergopharma Joachim Ganzer KG, Reinbek.

出版信息

J Allergy Clin Immunol. 2001 May;107(5):856-62. doi: 10.1067/mai.2001.114114.

Abstract

BACKGROUND

Determination of the allergen composition of an extract is essential for the improvement of hyposensitization therapy. Surprisingly, although grass pollen extracts have been studied intensively for 20 years, a further major allergen, Phl p 13, was detected recently in timothy grass pollen.

OBJECTIVES

We sought to determine the occurrence and importance of group 13 allergens in various grass species and to investigate their proteolytic stability.

METHODS

The group 13 allergens were determined by means of 2-dimensional PAGE blotting with patient sera and group 13-specific mAbs. The allergens were isolated chromatographically from several pollen extracts and analyzed by means of microsequencing. Cross-reactivity among various grass species was studied by using Western blots and immunoblot inhibition tests. The stability of the allergens was tested under defined extraction conditions.

RESULTS

Group 13 allergens are detectable in all common grasses and show IgE cross-reactivity among them. The allergenic components were identified in the neutral pH range with molecular masses of 50 to 60 kd, and in the case of Phl p 13, maximal binding of the isoforms was observed at 55 kd and at an isoelectric point of 6 to 7.5. Protein sequencing clearly confirms structural identities between different grass species, although individual variations are found. If low-molecular-mass components were depleted by means of gel filtration, a rapid degradation of group 13 allergens was observed. This is in contrast to other pollen allergens described thus far.

CONCLUSION

Group 13 allergens are widespread and are major allergens in the grasses. Predicted from their primary structures, these allergens are polygalacturonases. This class of enzymes is already known from microorganisms, and these enzymes are recognized as potential inducers of asthma. Our studies indicate that the group 13 allergens show a considerable microheterogeneity and degradation, especially after depletion of low-molecular-mass components. One has to be aware of this pivotal fact when soluble grass pollen extracts are prepared for diagnostics and hyposensitization therapy.

摘要

背景

确定提取物中的过敏原成分对于改进脱敏疗法至关重要。令人惊讶的是,尽管对草花粉提取物进行了20年的深入研究,但最近在梯牧草花粉中发现了另一种主要过敏原Phl p 13。

目的

我们试图确定13组过敏原在各种草种中的存在情况和重要性,并研究它们的蛋白水解稳定性。

方法

通过二维PAGE印迹法,使用患者血清和13组特异性单克隆抗体来确定13组过敏原。通过色谱法从几种花粉提取物中分离出过敏原,并进行微量测序分析。使用蛋白质印迹法和免疫印迹抑制试验研究各种草种之间的交叉反应性。在规定的提取条件下测试过敏原的稳定性。

结果

在所有常见草种中均可检测到13组过敏原,并且它们之间存在IgE交叉反应。在中性pH范围内鉴定出过敏原成分,分子量为50至60kd,对于Phl p 13,在55kd和6至7.5的等电点处观察到异构体的最大结合。蛋白质测序清楚地证实了不同草种之间的结构同一性,尽管存在个体差异。如果通过凝胶过滤去除低分子量成分,则会观察到13组过敏原的快速降解。这与迄今为止描述的其他花粉过敏原形成对比。

结论

13组过敏原广泛存在,是草类中的主要过敏原。从其一级结构预测,这些过敏原是多聚半乳糖醛酸酶。这类酶在微生物中已经为人所知,并且这些酶被认为是哮喘的潜在诱导剂。我们的研究表明,13组过敏原表现出相当大的微观异质性和降解,特别是在去除低分子量成分之后。在制备用于诊断和脱敏疗法的可溶性草花粉提取物时,必须意识到这一关键事实。

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