Paraphernalia
PPubMed8 Mar 2007Cited 89×

p53FamTaG: a database resource of human p53, p63 and p73 direct target genes combining <i> in silico </i> prediction and microarray data

Elisabetta Sbisà, Domenico Catalano, Giorgio Grillo, Flavio Licciulli, Antonio Turi, Sabino Liuni, Graziano Pesole, Anna De Grassi, Mariano Francesco Caratozzolo, Anna Maria D'Erchia, Beatriz Navarro, Apollonia Tullo, Cecilia Saccone, Andreas Gisel

Abstract

'Flavio Licciulli' 'Antonio Turi' 'Sabino Liuni' 'Graziano Pesole' 'Anna De Grassi' 'Mariano Francesco Caratozzolo' "Anna Maria D'Erchia" 'Beatriz Navarro' 'Apollonia Tullo' 'Cecilia Saccone' 'Andreas Gisel'] Background The p53 gene family consists of the three genes p53, p63 and p73, which have polyhedral non-overlapping functions in pivotal cellular processes such as DNA synthesis and repair, growth arrest, apoptosis, genome stability, angiogenesis, development and differentiation. These genes encode sequence-specific nuclear transcription factors that recognise the same responsive element (RE) in their target genes. Their inactivation or aberrant expression may determine tumour progression or developmental disease. The discovery of several protein isoforms with antagonistic roles, which are produced by the expression of different promoters and alternative splicing, widened the complexity of the scenario of the transcriptional network of the p53 family members. Therefore, the identification of the genes transactivated by p53 family members is crucial to understand the specific role for each gene in cell cycle regulation. We have combined a genome-wide computational search of p53 family REs and microarray analysis to identify new direct target genes. The huge amount of biological data produced has generated a critical need for bioinformatic tools able to manage and integrate such data and facilitate their retrieval and analysis. Description We have developed the p53FamTaG database (p53 FAMily TArget Genes), a modular relational database, which contains p53 family direct target genes selected in the human genome searching for the presence of the REs and the expression profile of these target genes obtained by microarray experiments. p53FamTaG database also contains annotations of publicly available databases and links to other experimental data. The genome-wide computational search of the REs was performed using PatSearch, a pattern-matching program implemented in the DNAfan tool.

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