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GOtcha: a new method for prediction of protein function assessed by the annotation of seven genomes

机译:GOtcha:一种通过预测七个基因组来评估蛋白质功能的新方法

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摘要

Background The function of a novel gene product is typically predicted by transitive assignment of annotation from similar sequences. We describe a novel method, GOtcha, for predicting gene product function by annotation with Gene Ontology (GO) terms. GOtcha predicts GO term associations with term-specific probability (P-score) measures of confidence. Term-specific probabilities are a novel feature of GOtcha and allow the identification of conflicts or uncertainty in annotation. Results The GOtcha method was applied to the recently sequenced genome for Plasmodium falciparum and six other genomes. GOtcha was compared quantitatively for retrieval of assigned GO terms against direct transitive assignment from the highest scoring annotated BLAST search hit (TOPBLAST). GOtcha exploits information deep into the 'twilight zone' of similarity search matches, making use of much information that is otherwise discarded by more simplistic approaches. At a P-score cutoff of 50%, GOtcha provided 60% better recovery of annotation terms and 20% higher selectivity than annotation with TOPBLAST at an E -value cutoff of 10-4. Conclusions The GOtcha method is a useful tool for genome annotators. It has identified both errors and omissions in the original Plasmodium falciparum annotation and is being adopted by many other genome sequencing projects.
机译:背景技术通常通过来自相似序列的注释的传递性分配来预测新基因产物的功能。我们描述了一种新的方法,GOtcha,用于通过注释基因本体论(GO)术语来预测基因产物功能。 GOtcha预测GO术语关联与特定术语的概率(P得分)的置信度。术语特定的概率是GOtcha的一项新颖功能,可以识别注释中的冲突或不确定性。结果将GOtcha方法应用于恶性疟原虫和其他六个基因组的最新测序基因组。对GOtcha进行了定量比较,以比较得分最高的带注释的BLAST搜索匹配(TOPBLAST)与直接传递指配的检索。 GOtcha利用信息进入相似性搜索匹配的“暮光区”深处,从而利用了很多信息,这些信息否则会被更简单的方法所丢弃。在P值截止值为50%时,在E值截止值为10 -4 时,GOtcha的注释项回收率比使用TOPBLAST的注释高60%,选择性更高。结论GOtcha方法是用于基因组注释者的有用工具。它已经识别出原始恶性疟原虫注释中的错误和遗漏,并被许多其他基因组测序项目采用。

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