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An improved ontological representation of dendritic cells as a paradigm for all cell types

Authors :
Mungall Chris
Lieberman Anne E
Diehl Alexander D
Arighi Cecilia N
Masci Anna
Scheuermann Richard H
Smith Barry
Cowell Lindsay G
Source :
BMC Bioinformatics, Vol 10, Iss 1, p 70 (2009)
Publication Year :
2009
Publisher :
BMC, 2009.

Abstract

Abstract Background Recent increases in the volume and diversity of life science data and information and an increasing emphasis on data sharing and interoperability have resulted in the creation of a large number of biological ontologies, including the Cell Ontology (CL), designed to provide a standardized representation of cell types for data annotation. Ontologies have been shown to have significant benefits for computational analyses of large data sets and for automated reasoning applications, leading to organized attempts to improve the structure and formal rigor of ontologies to better support computation. Currently, the CL employs multiple is_a relations, defining cell types in terms of histological, functional, and lineage properties, and the majority of definitions are written with sufficient generality to hold across multiple species. This approach limits the CL's utility for computation and for cross-species data integration. Results To enhance the CL's utility for computational analyses, we developed a method for the ontological representation of cells and applied this method to develop a dendritic cell ontology (DC-CL). DC-CL subtypes are delineated on the basis of surface protein expression, systematically including both species-general and species-specific types and optimizing DC-CL for the analysis of flow cytometry data. We avoid multiple uses of is_a by linking DC-CL terms to terms in other ontologies via additional, formally defined relations such as has_function. Conclusion This approach brings benefits in the form of increased accuracy, support for reasoning, and interoperability with other ontology resources. Accordingly, we propose our method as a general strategy for the ontological representation of cells. DC-CL is available from http://www.obofoundry.org.

Details

Language :
English
ISSN :
14712105
Volume :
10
Issue :
1
Database :
Directory of Open Access Journals
Journal :
BMC Bioinformatics
Publication Type :
Academic Journal
Accession number :
edsdoj.4c8c4e9525764a4b8c178830bfff62f3
Document Type :
article
Full Text :
https://doi.org/10.1186/1471-2105-10-70