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1.
Bioinformatics ; 29(20): 2643-4, 2013 Oct 15.
Article in English | MEDLINE | ID: mdl-23929031

ABSTRACT

SUMMARY: We present PARSEC (PAtteRn Search and Contextualization), a new open source platform for guided discovery, allowing localization and biological characterization of short genomic sites in entire eukaryotic genomes. PARSEC can search for a sequence or a degenerated pattern. The retrieved set of genomic sites can be characterized in terms of (i) conservation in model organisms, (ii) genomic context (proximity to genes) and (iii) function of neighboring genes. These modules allow the user to explore, visualize, filter and extract biological knowledge from a set of short genomic regions such as transcription factor binding sites. AVAILABILITY: Web site implemented in Java, JavaScript and C++, with all major browsers supported. Freely available at lbgi.fr/parsec. Source code is freely available at sourceforge.net/projects/genomicparsec.


Subject(s)
Genomics/methods , Algorithms , Genome , Humans , Internet , Nonlinear Dynamics , Programming Languages , Software
2.
Nucleic Acids Res ; 39(8): 3116-27, 2011 Apr.
Article in English | MEDLINE | ID: mdl-21177654

ABSTRACT

In the human genome, ∼ 10% of the genes are arranged head to head so that their transcription start sites reside within <1 kbp on opposite strands. In this configuration, a bidirectional promoter generally drives expression of the two genes. How bidirectional expression is performed from these particular promoters constitutes a puzzling question. Here, by a combination of in silico and biochemical approaches, we demonstrate that hStaf/ZNF143 is involved in controlling expression from a subset of divergent gene pairs. The binding sites for hStaf/ZNF143 (SBS) are overrepresented in bidirectional versus unidirectional promoters. Chromatin immunoprecipitation assays with a significant set of bidirectional promoters containing putative SBS revealed that 93% of them are associated with hStaf/ZNF143. Expression of dual reporter genes directed by bidirectional promoters are dependent on the SBS integrity and requires hStaf/ZNF143. Furthermore, in some cases, functional SBS are located in bidirectional promoters of gene pairs encoding a noncoding RNA and a protein gene. Remarkably, hStaf/ZNF143 per se exhibits an inherently bidirectional transcription activity, and together our data provide the demonstration that hStaf/ZNF143 is indeed a transcription factor controlling the expression of divergent protein-protein and protein-non-coding RNA gene pairs.


Subject(s)
Promoter Regions, Genetic , Trans-Activators/physiology , Transcription, Genetic , Binding Sites , DNA/chemistry , Down-Regulation , Gene Knockdown Techniques , Genome, Human , HeLa Cells , Humans , Proteins/genetics , RNA, Small Nuclear/genetics , RNA, Small Nuclear/metabolism , Sequence Analysis, DNA , Trans-Activators/genetics , Trans-Activators/metabolism
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