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用于抗蠕虫靶点发现的虎纹涡虫转录组种子管道的功能分析。

Functional analysis of Girardia tigrina transcriptome seeds pipeline for anthelmintic target discovery.

作者信息

Wheeler Nicolas J, Agbedanu Prince N, Kimber Michael J, Ribeiro Paula, Day Tim A, Zamanian Mostafa

机构信息

Department of Biomedical Sciences, Iowa State University, Ames, IA, 50010, USA.

Institute of Parasitology, McGill University, Ste. Anne de Bellevue, QC, H9X 3V9, Canada.

出版信息

Parasit Vectors. 2015 Jan 20;8:34. doi: 10.1186/s13071-014-0622-3.

Abstract

BACKGROUND

Neglected diseases caused by helminth infections impose a massive hindrance to progress in the developing world. While basic research on parasitic flatworms (platyhelminths) continues to expand, researchers have yet to broadly adopt a free-living model to complement the study of these important parasites.

METHODS

We report the high-coverage sequencing (RNA-Seq) and assembly of the transcriptome of the planarian Girardia tigrina across a set of dynamic conditions. The assembly was annotated and extensive orthology analysis was used to seed a pipeline for the rational prioritization and validation of putative anthelmintic targets. A small number of targets conserved between parasitic and free-living flatworms were comparatively interrogated.

RESULTS

240 million paired-end reads were assembled de novo to produce a strictly filtered predicted proteome consisting of over 22,000 proteins. Gene Ontology annotations were extended to 16,467 proteins. 2,693 sequences were identified in orthology groups spanning flukes, tapeworms and planaria, with 441 highlighted as belonging to druggable protein families. Chemical inhibitors were used on three targets in pharmacological screens using both planaria and schistosomula, revealing distinct motility phenotypes that were shown to correlate with planarian RNAi phenotypes.

CONCLUSIONS

This work provides the first comprehensive and annotated sequence resource for the model planarian G. tigrina, alongside a prioritized list of candidate drug targets conserved among parasitic and free-living flatworms. As proof of principle, we show that a simple RNAi and pharmacology pipeline in the more convenient planarian model system can inform parasite biology and serve as an efficient screening tool for the identification of lucrative anthelmintic targets.

摘要

背景

由蠕虫感染引起的被忽视疾病严重阻碍了发展中世界的进步。虽然对寄生扁虫(吸虫纲)的基础研究不断扩展,但研究人员尚未广泛采用自由生活模型来补充对这些重要寄生虫的研究。

方法

我们报告了在一系列动态条件下对涡虫 Girardia tigrina 的转录组进行的高覆盖度测序(RNA 测序)和组装。对组装结果进行注释,并使用广泛的直系同源分析来启动一个流程,以合理地对假定的抗蠕虫药物靶点进行优先级排序和验证。对寄生和自由生活扁虫之间保守的少数靶点进行了比较研究。

结果

从头组装了 2.4 亿对末端测序读段,以产生一个经过严格筛选的预测蛋白质组,其中包含超过 22000 种蛋白质。基因本体注释扩展到了 16467 种蛋白质。在吸虫、绦虫和涡虫的直系同源组中鉴定出 2693 个序列,其中 441 个被突出显示属于可成药蛋白家族。在使用涡虫和血吸虫幼虫的药理筛选中,对三个靶点使用了化学抑制剂,揭示了不同的运动表型,这些表型与涡虫 RNA 干扰表型相关。

结论

这项工作为模式涡虫 Girardia tigrina 提供了首个全面且有注释的序列资源,以及一份在寄生和自由生活扁虫中保守的候选药物靶点优先列表。作为原理验证,我们表明在更便捷的涡虫模型系统中,一个简单的 RNA 干扰和药理学流程可以为寄生虫生物学提供信息,并作为鉴定有利可图的抗蠕虫药物靶点的有效筛选工具。

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