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Prosecutor: parameter-free inference of gene function for prokaryotes using DNA microarray data, genomic context and multiple gene annotation sources

机译:检察官:使用DNA微阵列数据,基因组背景和多种基因注释来源对原核生物的基因功能进行无参数推断

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Background Despite a plethora of functional genomic efforts, the function of many genes in sequenced genomes remains unknown. The increasing amount of microarray data for many species allows employing the guilt-by-association principle to predict function on a large scale: genes exhibiting similar expression patterns are more likely to participate in shared biological processes. Results We developed Prosecutor, an application that enables researchers to rapidly infer gene function based on available gene expression data and functional annotations. Our parameter-free functional prediction method uses a sensitive algorithm to achieve a high association rate of linking genes with unknown function to annotated genes. Furthermore, Prosecutor utilizes additional biological information such as genomic context and known regulatory mechanisms that are specific for prokaryotes. We analyzed publicly available transcriptome data sets and used literature sources to validate putative functions suggested by Prosecutor. We supply the complete results of our analysis for 11 prokaryotic organisms on a dedicated website. Conclusion The Prosecutor software and supplementary datasets available at http://www.prosecutor.nl webcite allow researchers working on any of the analyzed organisms to quickly identify the putative functions of their genes of interest. A de novo analysis allows new organisms to be studied.
机译:背景技术尽管进行了大量的功能基因组工作,但测序基因组中许多基因的功能仍然未知。许多物种不断增加的微阵列数据量,使其可以运用负罪感关联原理来大规模预测功能:表现出相似表达模式的基因更可能参与共享的生物过程。结果我们开发了Prosecutor,该应用程序使研究人员能够根据可用的基因表达数据和功能注释快速推断基因功能。我们的无参数功能预测方法使用敏感算法来实现将未知功能的基因与注释的基因关联的高关联率。此外,检察官还利用其他生物信息,例如基因组背景和原核生物特有的已知调控机制。我们分析了公开的转录组数据集,并使用文献资料来验证检察官建议的推定功能。我们在一个专门的网站上提供了11种原核生物分析的完整结果。结论可以从http://www.prosecutor.nl网站上获得的Prosecutor软件和补充数据集,使研究人员可以对任何被分析的生物进行研究,以快速确定其感兴趣基因的假定功能。从头分析可以研究新生物。

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