Suppr超能文献

逻辑基因本体注释(GOAL):使用OWL探索基因本体注释

Logical Gene Ontology Annotations (GOAL): exploring gene ontology annotations with OWL.

作者信息

Jupp Simon, Stevens Robert, Hoehndorf Robert

机构信息

European Bioinformatics Institute, Wellcome Trust Genome Campus, Cambridge, CB10 1SD, UK.

出版信息

J Biomed Semantics. 2012 Apr 24;3 Suppl 1(Suppl 1):S3. doi: 10.1186/2041-1480-3-S1-S3.

Abstract

MOTIVATION

Ontologies such as the Gene Ontology (GO) and their use in annotations make cross species comparisons of genes possible, along with a wide range of other analytical activities. The bio-ontologies community, in particular the Open Biomedical Ontologies (OBO) community, have provided many other ontologies and an increasingly large volume of annotations of gene products that can be exploited in query and analysis. As many annotations with different ontologies centre upon gene products, there is a possibility to explore gene products through multiple ontological perspectives at the same time. Questions could be asked that link a gene product's function, process, cellular location, phenotype and disease. Current tools, such as AmiGO, allow exploration of genes based on their GO annotations, but not through multiple ontological perspectives. In addition, the semantics of these ontology's representations should be able to, through automated reasoning, afford richer query opportunities of the gene product annotations than is currently possible.

RESULTS

To do this multi-perspective, richer querying of gene product annotations, we have created the Logical Gene Ontology, or GOAL ontology, in OWL that combines the Gene Ontology, Human Disease Ontology and the Mammalian Phenotype Ontology, together with classes that represent the annotations with these ontologies for mouse gene products. Each mouse gene product is represented as a class, with the appropriate relationships to the GO aspects, phenotype and disease with which it has been annotated. We then use defined classes to query these protein classes through automated reasoning, and to build a complex hierarchy of gene products. We have presented this through a Web interface that allows arbitrary queries to be constructed and the results displayed.

CONCLUSION

This standard use of OWL affords a rich interaction with Gene Ontology, Human Disease Ontology and Mammalian Phenotype Ontology annotations for the mouse, to give a fine partitioning of the gene products in the GOAL ontology. OWL in combination with automated reasoning can be effectively used to query across ontologies to ask biologically rich questions. We have demonstrated that automated reasoning can be used to deliver practical on-line querying support for the ontology annotations available for the mouse.

AVAILABILITY

The GOAL Web page is to be found at http://owl.cs.manchester.ac.uk/goal.

摘要

动机

诸如基因本体论(GO)之类的本体及其在注释中的应用使得基因的跨物种比较以及一系列其他分析活动成为可能。生物本体论社区,特别是开放生物医学本体论(OBO)社区,提供了许多其他本体以及越来越多的基因产物注释,这些注释可用于查询和分析。由于许多具有不同本体的注释都以基因产物为中心,因此有可能同时从多个本体角度探索基因产物。可以提出将基因产物的功能、过程、细胞定位、表型和疾病联系起来的问题。当前的工具,如AmiGO,允许基于基因的GO注释探索基因,但不能从多个本体角度进行探索。此外,这些本体表示的语义应该能够通过自动推理,提供比目前更丰富的基因产物注释查询机会。

结果

为了对基因产物注释进行这种多视角、更丰富的查询,我们在OWL中创建了逻辑基因本体论,即GOAL本体论,它将基因本体论、人类疾病本体论和哺乳动物表型本体论结合在一起,同时还包括代表这些本体对小鼠基因产物注释的类。每个小鼠基因产物都表示为一个类,并与它已被注释的GO方面、表型和疾病具有适当的关系。然后,我们使用定义的类通过自动推理查询这些蛋白质类,并构建基因产物的复杂层次结构。我们通过一个Web界面展示了这一点,该界面允许构建任意查询并显示结果。

结论

OWL的这种标准用法为小鼠的基因本体论、人类疾病本体论和哺乳动物表型本体论注释提供了丰富的交互,从而在GOAL本体论中对基因产物进行精细划分。OWL与自动推理相结合可以有效地用于跨本体查询,以提出生物学意义丰富的问题。我们已经证明,自动推理可用于为小鼠可用的本体注释提供实际的在线查询支持。

可用性

GOAL网页可在http://owl.cs.manchester.ac.uk/goal上找到。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e4d/3337258/21f87cb60ef1/2041-1480-3-S1-S3-1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验