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柔嫩艾美耳球虫分泌蛋白编码基因的鉴定及通过鸡的DNA免疫研究对候选基因的评估。

Identification of Eimeria tenella genes encoding for secretory proteins and evaluation of candidates by DNA immunisation studies in chickens.

作者信息

Klotz Christian, Gehre Florian, Lucius Richard, Pogonka Thomas

机构信息

Department of Molecular Parasitology, Humboldt University Berlin, Philippstrasse 13, 10115 Berlin, Germany.

出版信息

Vaccine. 2007 Sep 4;25(36):6625-34. doi: 10.1016/j.vaccine.2007.06.048. Epub 2007 Jul 16.

Abstract

In order to identify secretory proteins as possible new vaccine candidates, a cDNA-library from E. tenella sporozoites was generated in yeast and was used to select secreted and surface proteins. Herein 191 clones were isolated and analysis of the nucleic acid sequences revealed 162 deduced open reading frames with a prediction for signal peptides. These sequences are characterized by high redundancy, comprising 25 unique protein fragments with a high degree of stage specificity. Only three sequences showed identical homology to already known E. tenella proteins. The majority, 16 fragments, revealed homology to known or hypothetical proteins, and six fragments had no sequence homologues in protein databases. In order to obtain optimised conditions for a DNA vaccination trial in chickens, with which our selected new sequences could be tested, we performed variant DNA immunisations with the well-characterized E. tenella antigen SO7. The cDNA of the SO7 antigen was subcloned into two different eucaryotic expression vectors, i.e. pcDNA3 and pVR1012. In addition, the SO7 sequence was fused to the stabilizing sequence of the enhanced green fluorescence protein (EGFP). All SO7 constructs induced a SO7 specific immune response after intramuscular application and no significant differences were found on using constructs with or without the EGFP fusion or with different vector systems. Full-length open reading frames from six selected Eimeria sequences were introduced into the eucaryotic expression vector pcDNA3. Subsequent immunisation trials revealed a decrease in parasite excretion for three constructs after challenge infection in comparison to the control animals. Our approach represents a rapid screening to identify and test putative new vaccine candidates from E. tenella sporozoites that could also be adopted to other apicomplexan parasites.

摘要

为了鉴定可能作为新型疫苗候选物的分泌蛋白,构建了来自柔嫩艾美耳球虫子孢子的cDNA文库,并用于筛选分泌蛋白和表面蛋白。在此,分离出191个克隆,核酸序列分析揭示了162个推导的开放阅读框,并预测有信号肽。这些序列的特点是高度冗余,包含25个具有高度阶段特异性的独特蛋白质片段。只有三个序列与已知的柔嫩艾美耳球虫蛋白显示出相同的同源性。大多数(16个片段)与已知或假设的蛋白显示出同源性,六个片段在蛋白质数据库中没有序列同源物。为了获得用于鸡DNA疫苗试验的优化条件,以便可以测试我们选择的新序列,我们用特征明确的柔嫩艾美耳球虫抗原SO7进行了不同的DNA免疫。将SO7抗原的cDNA亚克隆到两种不同的真核表达载体中,即pcDNA3和pVR1012。此外,将SO7序列与增强型绿色荧光蛋白(EGFP)的稳定序列融合。所有SO7构建体在肌肉注射后均诱导了SO7特异性免疫反应,并且在使用有或没有EGFP融合的构建体或不同载体系统时未发现显著差异。将六个选定的艾美耳球虫序列的全长开放阅读框引入真核表达载体pcDNA3。随后的免疫试验表明,与对照动物相比,在攻击感染后,三种构建体的寄生虫排泄量减少。我们的方法代表了一种快速筛选方法,用于从柔嫩艾美耳球虫子孢子中鉴定和测试推定的新型疫苗候选物,该方法也可应用于其他顶复门寄生虫。

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