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Representing Kidney Development Using the Gene Ontology
Author(s) -
Yasmin Alam-Faruque,
David P. Hill,
Emily Dimmer,
Midori A. Harris,
Rebecca E. Foulger,
Susan Tweedie,
Helen Attrill,
Douglas G. Howe,
Stephen Randall Thomas,
Duncan Davidson,
Adrian S. Woolf,
Judith A. Blake,
Chris Mungall,
Claire O’Donovan,
Rolf Apweiler,
Rachael P. Huntley
Publication year - 2014
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0099864
Subject(s) - uniprot , gene ontology , ontology , computational biology , function (biology) , annotation , biology , computer science , gene , bioinformatics , evolutionary biology , genetics , gene expression , epistemology , philosophy
Gene Ontology (GO) provides dynamic controlled vocabularies to aid in the description of the functional biological attributes and subcellular locations of gene products from all taxonomic groups ( www.geneontology.org ). Here we describe collaboration between the renal biomedical research community and the GO Consortium to improve the quality and quantity of GO terms describing renal development. In the associated annotation activity, the new and revised terms were associated with gene products involved in renal development and function. This project resulted in a total of 522 GO terms being added to the ontology and the creation of approximately 9,600 kidney-related GO term associations to 940 UniProt Knowledgebase (UniProtKB) entries, covering 66 taxonomic groups. We demonstrate the impact of these improvements on the interpretation of GO term analyses performed on genes differentially expressed in kidney glomeruli affected by diabetic nephropathy. In summary, we have produced a resource that can be utilized in the interpretation of data from small- and large-scale experiments investigating molecular mechanisms of kidney function and development and thereby help towards alleviating renal disease.

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