首页> 外文期刊>The Journal of Allergy and Clinical Immunology >Molecular cloning of a major Alternaria alternata allergen, rAlt a 2.
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Molecular cloning of a major Alternaria alternata allergen, rAlt a 2.

机译:主要的链格孢变应原的分子克隆rAlt a 2。

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BACKGROUND: Sensitivity to the fungus Alternaria alternata is a common cause of asthma. Epidemiologic studies from a variety of locations worldwide indicate that A alternata sensitivity is closely linked with the development of asthma. Furthermore, A alternata sensitivity has been associated with severe and potentially fatal attacks of asthma. OBJECTIVE: The diagnosis of A alternata sensitivity is hampered by the lack of standardized and well-characterized allergenic extracts. Molecular cloning of allergens offers the possibility of providing large quantities of purified, well-characterized allergens not only for diagnostic purposes but also for studying the pathogenesis of A alternata sensitivity. We used molecular cloning to identify, purify, and produce a major A alternata allergen in quantity. METHODS: We prepared messenger (m)RNA from A alternata to produce a complementary (c)DNA library. The library was screened for A alternata allergens by using sera from A alternata-sensitive individuals. A recombinant allergen was isolated, the cDNA sequence was determined, and the protein was expressed in Pichia pastoris. RESULTS: A unique A alternata allergen, rAlt a 2, was identified. A 2.2-kb cDNA sequence was obtained that has homology with a common transposable region and mouse RNA-dependent eukaryote initiation factor-2 alpha-kinase but no homology to any known allergen. No N-glycosylation sites were found in the cDNA sequence. The recombinant allergen was recognized by IgE antibodies in the sera of 16 of 26 (61%) individuals allergic to A alternata, which defines Alt a 2 as a major allergen. CONCLUSIONS: We have molecularly cloned a unique major A alternata allergen, rAlt a 2. Identification and expression of the recombinant allergen should enhance the development of standardized A alternata allergenic extracts and provide stable reagents for investigating the pathogenesis of A alternata sensitivity.
机译:背景:对真菌链格孢菌的敏感性是哮喘的常见病因。来自世界各地的流行病学研究表明,交链孢菌的敏感性与哮喘的发生密切相关。此外,交链杆菌敏感性与哮喘的严重和潜在致命发作有关。目的:由于缺乏标准化和特征明确的致敏性提取物,致使对交链孢菌敏感性的诊断受到阻碍。过敏原的分子克隆提供了提供大量纯化的,特性良好的过敏原的可能性,这不仅用于诊断目的,还用于研究轮虫A的发病机理。我们使用分子克隆来鉴定,纯化和产生大量的主要链格孢菌变应原。方法:我们从交链孢菌中制备了信使(m)RNA,以产生互补的(c)DNA文库。通过使用对A型链球菌敏感的个体的血清筛选该库中的A型链球菌变应原。分离出重组变应原,确定cDNA序列,并在巴斯德毕赤酵母中表达蛋白质。结果:鉴定出一种独特的交替链球菌变应原,rAlt a 2。获得了一个2.2kb的cDNA序列,该序列与常见的转座区和小鼠RNA依赖的真核生物起始因子2α激酶具有同源性,但与任何已知的过敏原均无同源性。在cDNA序列中未发现N-糖基化位点。重组变应原被26个(61%)变应原A过敏的个体中的16个血清中的IgE抗体识别,这将Alt a 2定义为主要变应原。结论:我们已经分子克隆了一种独特的主要A交链孢霉变应原,rAlt a2。重组变应原的鉴定和表达应增强标准化A交链孢霉变应原提取物的开发,并提供用于研究A交链孢霉敏感性的发病机理的稳定试剂。

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