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简单异尖线虫:三期幼虫表达序列标签(ESTs)分析

Anisakis simplex: analysis of expressed sequence tags (ESTs) of third-stage larva.

作者信息

Yu Hak Sun, Park Sang Kyun, Lee Keun Hee, Lee Sun Joo, Choi Sun Hee, Ock Mee Sun, Jeong Hae Jin

机构信息

Department of Parasitology, School of Medicine, Pusan National University, and Pusan National University Hospital Medical Research Institute, 1-10 Ami-dong, Seo-gu, Busan 602-739, Republic of Korea.

出版信息

Exp Parasitol. 2007 Sep;117(1):51-6. doi: 10.1016/j.exppara.2007.03.009. Epub 2007 Mar 27.

Abstract

This study analyzed the expressed sequence tags (ESTs) of the third-stage larvae of Anisakis simplex, in an attempt to gain further insight into its genomic expression patterns. An A. simplex cDNA library was constructed using the Uni-ZAP XR expression vector. A total of 493 clones (insert DNA>400 bp) were sequenced out of 580 clones selected randomly from a cDNA library of the A. simplex third-stage larva. After BLAST search analyses, 154 (31.2%) ESTs were found to have very low similarity, or no match at all to any of the proteins and gene sequences in the published databases. Most matched clones (98 clones, 20.0%) were determined to be highly homologous with the genes or proteins of Caenorhabditis elegans. Ten (2.0%) ESTs matched the genes isolated from humans, and 21 (4.3%) ESTs matched with the previously reported A. simplex genes or proteins. Eighty-nine clones (18.0%) matched a total of 14 genera and 17 species of human parasites. These 339 ESTs identified could be grouped into 13 categories: allergens or antigens (4.1%), growth- and cell division-related proteins (3.2%), heat shock proteins or molecular chaperones (1.8%), membrane proteins (5.6%), metabolism-associated proteins (24.2%), mitochondrial proteins (9.4%), nuclear proteins (2.4%), proteases and protease inhibitors (3.5%), signal transduction proteins (2.4%), structural proteins (7.4%), transcription and translation machinery-associated proteins (20.1%), transporters and receptor proteins (3.8%), and other protein types (12.1%). The genetic information of Anisakis determined in this study might prove to be quite helpful in elucidating the pathogenetic mechanisms of anisakidosis, and might be useful in the development of therapeutic reagents specific to anisakidosis.

摘要

本研究分析了简单异尖线虫第三期幼虫的表达序列标签(ESTs),以期进一步深入了解其基因组表达模式。使用Uni-ZAP XR表达载体构建了简单异尖线虫的cDNA文库。从简单异尖线虫第三期幼虫的cDNA文库中随机选取580个克隆进行测序,共获得493个克隆(插入DNA>400 bp)。经过BLAST搜索分析,发现154个(31.2%)ESTs与已发表数据库中的任何蛋白质和基因序列相似度极低或完全不匹配。大多数匹配的克隆(98个克隆,20.0%)被确定与秀丽隐杆线虫的基因或蛋白质高度同源。10个(2.0%)ESTs与从人类分离的基因匹配,21个(4.3%)ESTs与先前报道的简单异尖线虫基因或蛋白质匹配。89个克隆(18.0%)与总共14个属和17种人类寄生虫匹配。这些鉴定出的339个ESTs可分为13类:过敏原或抗原(4.1%)、生长和细胞分裂相关蛋白(3.2%)、热休克蛋白或分子伴侣(1.8%)、膜蛋白(5.6%)、代谢相关蛋白(24.2%)、线粒体蛋白(9.4%)、核蛋白(2.4%)、蛋白酶和蛋白酶抑制剂(3.5%)、信号转导蛋白(2.4%)、结构蛋白(7.4%)、转录和翻译机制相关蛋白(20.1%)、转运蛋白和受体蛋白(3.8%)以及其他蛋白类型(12.1%)。本研究确定的简单异尖线虫的遗传信息可能对阐明异尖线虫病的发病机制非常有帮助,并且可能有助于开发针对异尖线虫病的特异性治疗试剂。

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