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从丁香花粉中分离和鉴定一种橄榄过敏原样蛋白。三种编码蛋白质异构体的cDNA的序列分析。

Isolation and characterization of an olive allergen-like protein from lilac pollen. Sequence analysis of three cDNA encoding protein isoforms.

作者信息

Batanero E, Villalba M, López-Otín C, Rodríguez R

机构信息

Departamento de Bioquímica y Biología Molecular, Facultad de Ciencias, Universidad Complutense, Madrid, Spain.

出版信息

Eur J Biochem. 1994 Apr 1;221(1):187-93. doi: 10.1111/j.1432-1033.1994.tb18728.x.

DOI:10.1111/j.1432-1033.1994.tb18728.x
PMID:7513281
Abstract

An olive allergen-like protein has been isolated from lilac (Syringa vulgaris) pollen extract. The protein can be considered as an allergen since is recognized by IgE from olive hypersensitive human sera, and has been called Syr v I (IUIS nomenclature). This protein consists of a glycosylated polypeptide of 20 kDa, which has an amino acid composition, spectroscopic properties, and an N-terminal sequence similar to the major allergen from olive pollen, Ole e I. The lilac allergen is recognized by rabbit polyclonal antisera raised against olive allergen as well as by an Ole e I-specific monoclonal antibody. Using a polymerase chain reaction strategy, based on the similarities observed between these olive and lilac proteins, three cDNA clones encoding Syr v I have been isolated and sequenced. These clones code for a polymorphic protein of 145 residues with a derived molecular mass of about 16,400Da, which contains a potential N-glycosylation site. Comparison of the deduced amino acid sequences of these Syr v I isoforms to each other revealed identities of 90-97%. Moreover, these sequences showed a high degree of similarity (85.5-89.6% identity) with Ole e I. The structural and immunological characterization of Syr v I justify the cross-reactions observed between olive and lilac pollen extracts. The molecular cloning of Syr v I is relevant for the epitope mapping in Oleaceae allergens, and may contribute to an improvement in the design of reagents for diagnosis and therapy of IgE-dependent allergic reactions.

摘要

已从丁香(紫丁香)花粉提取物中分离出一种类似橄榄过敏原的蛋白质。该蛋白质可被视为一种过敏原,因为它能被橄榄过敏患者血清中的IgE识别,被命名为Syr v I(国际免疫学会命名法)。这种蛋白质由一条20 kDa的糖基化多肽组成,其氨基酸组成、光谱性质以及N端序列与橄榄花粉的主要过敏原Ole e I相似。丁香过敏原能被针对橄榄过敏原产生的兔多克隆抗血清以及Ole e I特异性单克隆抗体识别。基于这些橄榄和丁香蛋白质之间观察到的相似性,采用聚合酶链反应策略,分离并测序了三个编码Syr v I的cDNA克隆。这些克隆编码一种由145个残基组成的多态性蛋白质,推导分子量约为16400Da,含有一个潜在的N糖基化位点。对这些Syr v I异构体推导的氨基酸序列进行相互比较,发现同一性为90 - 97%。此外,这些序列与Ole e I显示出高度相似性(同一性为85.5 - 89.6%)。Syr v I的结构和免疫学特征解释了在橄榄和丁香花粉提取物之间观察到的交叉反应。Syr v I的分子克隆与木犀科过敏原的表位定位相关,可能有助于改进IgE依赖性过敏反应诊断和治疗试剂的设计。

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引用本文的文献

1
Olive cultivar origin is a major cause of polymorphism for Ole e 1 pollen allergen.油橄榄品种起源是油橄榄花粉过敏原Ole e 1多态性的主要原因。
BMC Plant Biol. 2008 Jan 25;8:10. doi: 10.1186/1471-2229-8-10.
2
Functional architecture of a late pollen promoter: pollen-specific transcription is developmentally regulated by multiple stage-specific and co-dependent activator elements.晚期花粉启动子的功能结构:花粉特异性转录受多个阶段特异性且相互依赖的激活元件的发育调控。
Plant Mol Biol. 1998 Jul;37(5):859-69. doi: 10.1023/a:1006095023050.