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蜜蜂毒液变应原酸性磷酸酶(Api m 3)在昆虫细胞中的分子克隆与表达

Molecular cloning and expression in insect cells of honeybee venom allergen acid phosphatase (Api m 3).

作者信息

Grunwald Thomas, Bockisch Benjamin, Spillner Edzard, Ring Johannes, Bredehorst Reinhard, Ollert Markus W

机构信息

Protein Ligand Structural (PLS)-Design GmbH, Hamburg, Germany.

出版信息

J Allergy Clin Immunol. 2006 Apr;117(4):848-54. doi: 10.1016/j.jaci.2005.12.1331. Epub 2006 Feb 21.

Abstract

BACKGROUND

Acid phosphatase (Api m 3) is a major allergen in honeybee (Apis mellifera) venom, and its availability as a recombinant protein may facilitate the development of improved diagnostic tests and immunotherapies.

OBJECTIVE

One objective is the determination of the complete primary structure of Api m 3 and to obtain recombinant Api m 3 on the basis of expression in insect cells. Another objective is the quantitative analysis of patient serum IgE antibody reactive to recombinant Api m 3.

METHODS

The cloning of Api m 3 from venom gland cDNA and its expression as a full-length protein in eukaryotic insect cells is described. The immunoreactivity of serum IgE antibodies of honeybee venom-sensitized patients to recombinant Api m 3 was determined in an enzyme immunoassay.

RESULTS

PCR amplification generated a 1122-bp DNA fragment whose identity as the coding sequence of Api m 3 was verified by several means. Recombinant Api m 3, expressed in Trichoplusia ni cells, showed an expected molecular weight and enzymatic activity at pH 4.5. Analysis of tryptic fragments of purified recombinant Api m 3 by mass spectrometry confirmed its identity. In immunoassays, recombinant Api m 3 is specifically recognized by IgE antibodies of pooled serum in Western blots and by 37% of the individual sera of honeybee venom-sensitized patients in ELISA analysis.

CONCLUSION

The availability of recombinant Api m 3 provides a tool for both the development of improved diagnostic tests and the design of safer and more effective immunotherapeutic approaches for honeybee venom allergy.

CLINICAL IMPLICATIONS

The recombinant venom allergen Api m 3 is a key element in the search for an optimized component-resolved approach to honeybee venom allergy with regard to both the development of superior diagnostic tests and the improvement of allergen immunotherapy.

摘要

背景

酸性磷酸酶(Api m 3)是蜜蜂(意大利蜜蜂)毒液中的一种主要过敏原,其重组蛋白的可获得性可能有助于改进诊断测试和免疫疗法的开发。

目的

一个目标是确定Api m 3的完整一级结构,并基于在昆虫细胞中的表达获得重组Api m 3。另一个目标是对重组Api m 3反应的患者血清IgE抗体进行定量分析。

方法

描述了从毒腺cDNA克隆Api m 3并将其作为全长蛋白在真核昆虫细胞中表达的过程。在酶免疫测定中测定了蜜蜂毒液致敏患者血清IgE抗体对重组Api m 3的免疫反应性。

结果

PCR扩增产生了一个1122 bp的DNA片段,通过多种方法验证了其作为Api m 3编码序列的身份。在粉纹夜蛾细胞中表达的重组Api m 3在pH 4.5时显示出预期的分子量和酶活性。通过质谱分析纯化的重组Api m 3的胰蛋白酶片段证实了其身份。在免疫测定中,重组Api m 3在蛋白质印迹中被混合血清的IgE抗体特异性识别,在ELISA分析中被37%的蜜蜂毒液致敏患者的个体血清识别。

结论

重组Api m 3的可获得性为改进诊断测试的开发以及为蜜蜂毒液过敏设计更安全、更有效的免疫治疗方法提供了一种工具。

临床意义

重组毒液过敏原Api m 3是寻求优化的组分解析方法治疗蜜蜂毒液过敏的关键要素,这涉及到开发卓越的诊断测试和改进过敏原免疫疗法。

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