TRANSFAC(R) and its module TRANSCompel(R): transcriptional gene regulation in eukaryotes

2005 Nucleic Acids Research 2,218 citations

Abstract

The TRANSFAC database on transcription factors, their binding sites, nucleotide distribution matrices and regulated genes as well as the complementing database TRANSCompel on composite elements have been further enhanced on various levels. A new web interface with different search options and integrated versions of Match and Patch provides increased functionality for TRANSFAC. The list of databases which are linked to the common GENE table of TRANSFAC and TRANSCompel has been extended by: Ensembl, UniGene, EntrezGene, HumanPSD and TRANSPRO. Standard gene names from HGNC, MGI and RGD, are included for human, mouse and rat genes, respectively. With the help of InterProScan, Pfam, SMART and PROSITE domains are assigned automatically to the protein sequences of the transcription factors. TRANSCompel contains now, in addition to the COMPEL table, a separate table for detailed information on the experimental EVIDENCE on which the composite elements are based. Finally, for TRANSFAC, in respect of data growth, in particular the gain of Drosophila transcription factor binding sites (by courtesy of the Drosophila DNase I footprint database) and of Arabidopsis factors (by courtesy of DATF, Database of Arabidopsis Transcription Factors) has to be stressed. The here described public releases, TRANSFAC 7.0 and TRANSCompel 7.0, are accessible under http://www.gene-regulation.com/pub/databases.html.

Keywords

BiologyArabidopsisGeneticsGeneTranscription factorUniGeneEnsemblDatabaseTranscription (linguistics)Computational biologyGene expressionGenomeGenomicsExpressed sequence tagMutant

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Year
2005
Type
article
Volume
34
Issue
90001
Pages
D108-D110
Citations
2218
Access
Closed

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Volker Matys (2005). TRANSFAC(R) and its module TRANSCompel(R): transcriptional gene regulation in eukaryotes. Nucleic Acids Research , 34 (90001) , D108-D110. https://doi.org/10.1093/nar/gkj143

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DOI
10.1093/nar/gkj143