Assessing identity, redundancy and confounds in Gene Ontology annotations over time

scientific article published on 06 January 2013

Assessing identity, redundancy and confounds in Gene Ontology annotations over time is …
instance of (P31):
scholarly articleQ13442814

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P8978DBLP publication IDjournals/bioinformatics/GillisP13
P356DOI10.1093/BIOINFORMATICS/BTS727
P932PMC publication ID3570208
P698PubMed publication ID23297035
P5875ResearchGate publication ID234086809

P50authorPaul PavlidisQ40156716
Jesse GillisQ41050047
P2860cites workAnnotation error in public databases: misannotation of molecular function in enzyme superfamiliesQ21145347
Gene ontology: tool for the unification of biologyQ23781406
Gene set enrichment analysis: a knowledge-based approach for interpreting genome-wide expression profilesQ24536351
GO PaD: the Gene Ontology Partition DatabaseQ24675570
Retrieving sequences of enzymes experimentally characterized but erroneously annotated : the case of the putrescine carbamoyltransferaseQ24801386
Gene Ontology: looking backwards and forwardsQ24805369
A critical assessment of Mus musculus gene function prediction using integrated genomic evidenceQ27499387
Semantic similarity measures as tools for exploring the gene ontologyQ28211764
Molecular characterization and comparison of the components and multiprotein complexes in the postsynaptic proteomeQ28236352
Sporadic autism exomes reveal a highly interconnected protein network of de novo mutationsQ29030218
Exploring inconsistencies in genome-wide protein function annotations: a machine learning approachQ29036401
The GeneMANIA prediction server: biological network integration for gene prioritization and predicting gene functionQ29614950
Gene Ontology term overlap as a measure of gene functional similarityQ33357701
Proteins encoded in genomic regions associated with immune-mediated disease physically interact and suggest underlying biologyQ33797864
The Impact of Multifunctional Genes on "Guilt by Association" AnalysisQ33833630
GO Trimming: Systematically reducing redundancy in large Gene Ontology datasetsQ33974300
Intrinsic errors in genome annotationQ34085839
Accurate evaluation and analysis of functional genomics data and methodsQ34135938
HIPPIE: Integrating protein interaction networks with experiment based quality scores.Q34163733
On the Use of Gene Ontology Annotations to Assess Functional Similarity among Orthologs and Paralogs: A Short ReportQ34167857
“Guilt by Association” Is the Exception Rather Than the Rule in Gene NetworksQ34220929
Quality of computationally inferred gene ontology annotationsQ34302143
GO-Module: functional synthesis and improved interpretation of Gene Ontology patternsQ34929361
The role of indirect connections in gene networks in predicting functionQ35051909
Inferring novel gene-disease associations using Medical Subject Heading Over-representation ProfilesQ36632948
Impact of ontology evolution on functional analysesQ38464559
Improved detection of overrepresentation of Gene-Ontology annotations with parent child analysisQ38515564
GOChase: correcting errors from Gene Ontology-based annotations for gene productsQ38521422
The Gene Ontology Annotation (GOA) project: implementation of GO in SWISS-PROT, TrEMBL, and InterProQ38522863
Identifying network communities with a high resolutionQ47833763
P433issue4
P407language of work or nameEnglishQ1860
P921main subjectontologyQ324254
Gene OntologyQ135085
P304page(s)476-482
P577publication date2013-01-06
P1433published inBioinformaticsQ4914910
P1476titleAssessing identity, redundancy and confounds in Gene Ontology annotations over time
P478volume29

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