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反向疫苗学方法鉴定出一种细粒棘球蚴表皮膜蛋白烯醇酶作为疫苗候选物。

Reverse vaccinology approach identify an Echinococcus granulosus tegumental membrane protein enolase as vaccine candidate.

机构信息

Department of Parasitology, Zhongshan School of Medicine, Sun Yat-sen University Guangzhou, Guangzhou, Guangdong, China.

出版信息

Parasitol Res. 2010 Mar;106(4):873-82. doi: 10.1007/s00436-010-1729-x. Epub 2010 Feb 2.

Abstract

Applying reverse vaccinology strategy, we employed a sequence encoding an enolase from Taenia asiatica to search its homolog in the expression sequence tag (EST) database of Echinococcus granulosus and found two EST sequences (Access number: CN653186 and CN649593) of a clone Eg_PSGRS_13B09 from E. granulosus protoscolex full-length cDNA library, which are responding for the 5' and 3' partial cds of E. granulosus enolase, respectively. Primers are designed according to the 5' end and 3'end of the putative encoding sequence to amplify the genomic DNA of E. granulosus strain isolated from sheep in Qinghai province of China by polymerase chain reaction (PCR). A sole product of 1,449 bp in length was obtained, which contains two little introns of 78 bp and 69 bp, respectively. The introns were excised by unsymmetrical PCR with combined flank sequences of introns as primers. The structural, functional, and immunological characteristics of putative amino acid sequence were predicted by bioinformatics analysis. The complete coding sequence was predicted to encode 433 residues and contain a transmembrane region aa(104-124), with the N terminus outside and C terminus inside. The inside part is quite the functional domain. SWISS-MODEL modulated its 3D structure as a barrel which constitutes of alternatively arranged alpha helix-beta sheet, with the key sites such as substrate binding region, active sites, Mg(2+)-binding sites closely located at the center. The protein contains a potential nuclear localization sequence aa(190-199) and several linear B cell epitopes and CTL T cell epitopes, of which the outside epitope aa(49-57) and inside epitope aa(228-236) are facultative T cell and B cell epitope, and the linear B cell epitope aa(206-213) contains the active center site Glu(210), suggesting the putative protein is a potential membrane with strong immunogenicity. The complete cds was expressed in Escherichia coli, and the recombinant protein can be recognized by the serum from patient infected with E. granulosus. Reverse vaccinology process identified E. granulosus tegumental membrane protein enolase as vaccine candidate.

摘要

应用反向疫苗学策略,我们利用编码来自亚洲带绦虫烯醇酶的序列在细粒棘球蚴的表达序列标签(EST)数据库中搜索其同源物,发现了来自细粒棘球蚴原头节全长 cDNA 文库的一个克隆 Eg_PSGRS_13B09 的两个 EST 序列(Access number:CN653186 和 CN649593),它们分别对应于细粒棘球蚴烯醇酶的 5'和 3'部分 cds。根据推定编码序列的 5'端和 3'端设计引物,通过聚合酶链反应(PCR)扩增来自中国青海省绵羊的细粒棘球蚴基因组 DNA。获得了长度为 1449bp 的单一产物,其中包含两个分别为 78bp 和 69bp 的小内含子。通过不对称 PCR 用内含子的侧翼序列作为引物切除内含子。通过生物信息学分析预测假定氨基酸序列的结构、功能和免疫学特征。完整的编码序列预测编码 433 个残基,包含一个跨膜区 aa(104-124),N 端在外面,C 端在里面。内部部分是相当功能域。SWISS-MODEL 模拟其 3D 结构为一个桶,由交替排列的α螺旋-β片构成,关键位点如底物结合区、活性位点、Mg(2+)-结合位点紧密位于中心。该蛋白含有一个潜在的核定位序列 aa(190-199)和几个线性 B 细胞表位和 CTL T 细胞表位,其中外部表位 aa(49-57)和内部表位 aa(228-236)是可选 T 细胞和 B 细胞表位,线性 B 细胞表位 aa(206-213)含有活性中心位点 Glu(210),表明该假定蛋白是一种具有强免疫原性的潜在膜蛋白。完整的 cds 在大肠杆菌中表达,重组蛋白可被感染细粒棘球蚴的患者血清识别。反向疫苗学过程将细粒棘球蚴表皮膜蛋白烯醇酶鉴定为候选疫苗。

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