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液泡丝氨酸蛋白酶,一种来自草本枝孢菌的交叉反应性变应原。

The vacuolar serine protease, a cross-reactive allergen from Cladosporium herbarum.

作者信息

Pöll Verena, Denk Ursula, Shen Horng-Der, Panzani Raphael C, Dissertori Oliver, Lackner Peter, Hemmer Wolfgang, Mari Adriano, Crameri Reto, Lottspeich Friedrich, Rid Raphaela, Richter Klaus, Breitenbach Michael, Simon-Nobbe Birgit

机构信息

Dept. of Cell-Biology, University of Salzburg, Salzburg, Austria.

出版信息

Mol Immunol. 2009 Apr;46(7):1360-73. doi: 10.1016/j.molimm.2008.11.017. Epub 2009 Jan 21.

Abstract

Subtilisin-like serine proteases make up one of the most important allergen-families regarding the number of individual allergens. Previously, fungal subtilisin-like serine proteases have been identified from Aspergillus-, Penicillium-, and Trichophyton-species having a prevalence of IgE-reactivity between 33% and 80%. Since IgE-cross-reactivity is a common phenomenon within fungal species we wanted to know whether this protein also represents an allergen in Cladosporium herbarum. Hence, a screening of a C. herbarum cDNA library was performed using the coding sequence of the Penicillium oxalicum vacuolar serine protease (Pen o 18) as hybridization probe, ending up with a full-length clone. Biochemical and immunological characterization of this clone revealed that C. herbarum vacuolar serine protease most likely is synthesized as a precursor with an N-terminal pro-enzyme sequence and represents a minor allergen (Cla h 9) with a prevalence of IgE-reactivity of 15.5%. Furthermore Cla h 9 specifically reacted with the two monoclonal antibodies FUM20 and PCM39, as do the vacuolar serine proteases from Aspergillus fumigatus and Penicillium species. Investigation of IgE-cross-reactivity between Cla h 9 and other fungal serine proteases revealed that cross-reactivity is higher between vacuolar than alkaline serine proteases. IgE-epitope mapping of Cla h 9 was done in order to test whether four Cla h 9-peptides having a high sequence homology to previously determined Pen ch 18-IgE-epitopes also harbour IgE-epitopes. Three-dimensional models of the vacuolar serine proteases from C. herbarum and Penicillium chrysogenum were generated for the three-dimensional localization of the Cla h 9- and Pen ch 18- IgE-reactive and -non-reactive peptides. Taken together a new C. herbarum allergen has been identified, which may be useful in a molecule-based approach of C. herbarum allergy-diagnosis and -therapy. Moreover, Cla h 9 represents a further member of the subtilisin-like serine protease allergen-family, which stresses the importance of these proteins with respect to fungal IgE-cross-reactivity.

摘要

就单个过敏原的数量而言,枯草杆菌蛋白酶样丝氨酸蛋白酶构成了最重要的过敏原家族之一。此前,已从曲霉属、青霉属和毛癣菌属中鉴定出真菌枯草杆菌蛋白酶样丝氨酸蛋白酶,其IgE反应性患病率在33%至80%之间。由于IgE交叉反应是真菌物种中的常见现象,我们想知道这种蛋白质在草本枝孢菌中是否也代表一种过敏原。因此,使用草酸青霉液泡丝氨酸蛋白酶(Pen o 18)的编码序列作为杂交探针,对草本枝孢菌cDNA文库进行筛选,最终获得一个全长克隆。对该克隆的生化和免疫学特性进行分析后发现,草本枝孢菌液泡丝氨酸蛋白酶很可能以前体形式合成,前体带有N端酶原序列,是一种次要过敏原(Cla h 9),IgE反应性患病率为15.5%。此外,Cla h 9与两种单克隆抗体FUM20和PCM39发生特异性反应,烟曲霉和青霉属的液泡丝氨酸蛋白酶也是如此。对Cla h 9与其他真菌丝氨酸蛋白酶之间的IgE交叉反应性进行研究后发现,液泡丝氨酸蛋白酶之间的交叉反应性高于碱性丝氨酸蛋白酶。对Cla h 9进行IgE表位定位,以测试与先前确定的Pen ch 18-IgE表位具有高度序列同源性的四个Cla h 9肽段是否也含有IgE表位。构建了草本枝孢菌和产黄青霉液泡丝氨酸蛋白酶的三维模型,用于对Cla h 9和Pen ch 18的IgE反应性和非反应性肽段进行三维定位。综上所述,已鉴定出一种新的草本枝孢菌过敏原,这可能有助于基于分子的草本枝孢菌过敏诊断和治疗方法。此外,Cla h 9代表枯草杆菌蛋白酶样丝氨酸蛋白酶过敏原家族的又一个成员,这凸显了这些蛋白质在真菌IgE交叉反应性方面的重要性。

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