Chromatin immunoprecipitation (ChIP) experiments allow the location of transcription factors to be determined across the genome. Subsequent analysis of the sequences of the identified regions allows binding to be localized at a higher resolution than can be achieved by current high-throughput experiments without sequence analysis and may provide important insight into the regulatory programs enacted by the protein of interest. In this chapter we review the tools, workflow, and common pitfalls of such analyses and recommend strategies for effective motif discovery from these data
The biological significance of interactions of nuclear proteins with DNA in the context of gene expr...
ChIP-seq, which combines chromatin immunoprecipitation (ChIP) with next-generation parallel sequenci...
<div><p>Mapping the chromosomal locations of transcription factors, nucleosomes, histone modificatio...
Motif discovery has been one of the most widely studied problems in bioinformatics ever since genomi...
International audienceEukaryotic genomes contain a variety of structured patterns: repetitive elemen...
International audienceEukaryotic genomes contain a variety of structured patterns: repetitive elemen...
International audienceEukaryotic genomes contain a variety of structured patterns: repetitive elemen...
International audienceEukaryotic genomes contain a variety of structured patterns: repetitive elemen...
Coupling chromatin immunoprecipitation (ChIP) with recently developed massively parallel sequencing ...
Coupling chromatin immunoprecipitation (ChIP) with recently developed massively parallel sequencing ...
Here we describe chromatin immunoprecipitation (ChIP), a molecular approach that uses formaldehyde c...
Background: Chromatin immunoprecipitation (ChIP) coupled to high-throughput...
International audienceThis protocol explains how to use the online integrated pipeline 'peak-motifs'...
This protocol explains how to use the online integrated pipeline 'peak-motifs' (http://rsat.ulb.ac.b...
International audienceThis protocol explains how to use the online integrated pipeline 'peak-motifs'...
The biological significance of interactions of nuclear proteins with DNA in the context of gene expr...
ChIP-seq, which combines chromatin immunoprecipitation (ChIP) with next-generation parallel sequenci...
<div><p>Mapping the chromosomal locations of transcription factors, nucleosomes, histone modificatio...
Motif discovery has been one of the most widely studied problems in bioinformatics ever since genomi...
International audienceEukaryotic genomes contain a variety of structured patterns: repetitive elemen...
International audienceEukaryotic genomes contain a variety of structured patterns: repetitive elemen...
International audienceEukaryotic genomes contain a variety of structured patterns: repetitive elemen...
International audienceEukaryotic genomes contain a variety of structured patterns: repetitive elemen...
Coupling chromatin immunoprecipitation (ChIP) with recently developed massively parallel sequencing ...
Coupling chromatin immunoprecipitation (ChIP) with recently developed massively parallel sequencing ...
Here we describe chromatin immunoprecipitation (ChIP), a molecular approach that uses formaldehyde c...
Background: Chromatin immunoprecipitation (ChIP) coupled to high-throughput...
International audienceThis protocol explains how to use the online integrated pipeline 'peak-motifs'...
This protocol explains how to use the online integrated pipeline 'peak-motifs' (http://rsat.ulb.ac.b...
International audienceThis protocol explains how to use the online integrated pipeline 'peak-motifs'...
The biological significance of interactions of nuclear proteins with DNA in the context of gene expr...
ChIP-seq, which combines chromatin immunoprecipitation (ChIP) with next-generation parallel sequenci...
<div><p>Mapping the chromosomal locations of transcription factors, nucleosomes, histone modificatio...