Multicellular organismal development is controlled by a complex network of transcription factors, promoters and enhancers. Although reliable computational and experimental methods exist for enhancer detection, prediction of their target genes remains a major challenge. On the basis of available literature and ChIP-seq and ChIP-chip data for enhanceosome factor p300 and the transcriptional regulator Gli3, we found that genomic proximity and conserved synteny predict target genes with a relatively low recall of 12-27% within 2 Mb intervals centered at the enhancers. Here, we show that functional similarities between enhancer binding proteins and their transcriptional targets and proximity in the protein-protein interactome improve prediction ...
Gene expression is an essential mechanism for physical and mental development of human. Aberrant reg...
How to discriminate distal regulatory elements to a gene target is challenging in understanding gene...
Motivation: Looping is one of the mechanisms responsible of gene regulation in eukaryotes. It is kno...
Multicellular organismal development is controlled by a complex network of transcription factors, pr...
Multicellular organismal development is controlled by a complex network of transcription factors, pr...
Multicellular organismal development is controlled by a complex network of transcription factors, pr...
BACKGROUND: Many genome-wide collections of candidate cis-regulatory elements (cCREs) have been defi...
Despite the advent of high throughput genomics technology and the wealth of data characterizing tran...
Background Enhancers play a fundamental role in orchestrating cell state and development. Although s...
Genome-wide association studies have shown that the majority of disease-associated genetic variants ...
High-throughput technologies such as chromatin immunoprecipitation (IP) followed by next generation ...
We have developed a machine learning approach to predict stimulation-dependent enhancer-promoter int...
SummaryUnderstanding the regulation of human gene expression requires knowledge of the “second genet...
Abstract Background Revealing the gene targets of dis...
Trabajo presentado en EMBO Workshop, Enhanceropathies: Understanding enhancer function to understand...
Gene expression is an essential mechanism for physical and mental development of human. Aberrant reg...
How to discriminate distal regulatory elements to a gene target is challenging in understanding gene...
Motivation: Looping is one of the mechanisms responsible of gene regulation in eukaryotes. It is kno...
Multicellular organismal development is controlled by a complex network of transcription factors, pr...
Multicellular organismal development is controlled by a complex network of transcription factors, pr...
Multicellular organismal development is controlled by a complex network of transcription factors, pr...
BACKGROUND: Many genome-wide collections of candidate cis-regulatory elements (cCREs) have been defi...
Despite the advent of high throughput genomics technology and the wealth of data characterizing tran...
Background Enhancers play a fundamental role in orchestrating cell state and development. Although s...
Genome-wide association studies have shown that the majority of disease-associated genetic variants ...
High-throughput technologies such as chromatin immunoprecipitation (IP) followed by next generation ...
We have developed a machine learning approach to predict stimulation-dependent enhancer-promoter int...
SummaryUnderstanding the regulation of human gene expression requires knowledge of the “second genet...
Abstract Background Revealing the gene targets of dis...
Trabajo presentado en EMBO Workshop, Enhanceropathies: Understanding enhancer function to understand...
Gene expression is an essential mechanism for physical and mental development of human. Aberrant reg...
How to discriminate distal regulatory elements to a gene target is challenging in understanding gene...
Motivation: Looping is one of the mechanisms responsible of gene regulation in eukaryotes. It is kno...