Enhancers are stretches of DNA (100-1000 bp) that play a major role in development gene expression, evolution and disease. It has been recently shown that in high-level eukaryotes enhancers rarely work alone, instead they collaborate by forming clusters of cis-regulatory modules (CRMs). Although the binding of transcription factors is sequence-specific, the identification of functionally similar enhancers is very difficult and it cannot be carried out with traditional alignment-based techniques
International audienceBACKGROUND: Regulation of gene expression plays a pivotal role in cellular fun...
We explore several computational approaches to analyzing interspecies genomic sequence alignments, a...
Motivation: Looping is one of the mechanisms responsible of gene regulation in eukaryotes. It is kno...
MOTIVATION: The identity of cells and tissues is to a large degree governed by transcriptional regul...
Motivation: The identity of cells and tissues is to a large degree governed by transcriptional regul...
Transcriptional regulation of genes is fundamental to all living organisms. The spatial, temporal an...
Motivation: Some recent comparative studies have revealed that regulatory regions can retain functio...
Despite the critical role of gene regulation in cell development and differentiation, the major chal...
Linking cooperatively functioning cis-regulatory elements (CREs), specifically enhancers and promote...
A major challenge in understanding metazoan genomes is to find and annotate the regions that control...
Motivation: Evolutionarily conserved non-coding genomic sequences represent a potentially rich sourc...
MOTIVATION: Evolutionarily conserved non-coding genomic sequences represent a potentially rich sourc...
A central challenge in regulatory genomics today is to understand the precise relationship between r...
Identifying DNA cis-regulatory modules (CRMs) that control the expression of specific genes is cruci...
Although many studies proposed methods for the identification of enhancers, reliable prediction on a...
International audienceBACKGROUND: Regulation of gene expression plays a pivotal role in cellular fun...
We explore several computational approaches to analyzing interspecies genomic sequence alignments, a...
Motivation: Looping is one of the mechanisms responsible of gene regulation in eukaryotes. It is kno...
MOTIVATION: The identity of cells and tissues is to a large degree governed by transcriptional regul...
Motivation: The identity of cells and tissues is to a large degree governed by transcriptional regul...
Transcriptional regulation of genes is fundamental to all living organisms. The spatial, temporal an...
Motivation: Some recent comparative studies have revealed that regulatory regions can retain functio...
Despite the critical role of gene regulation in cell development and differentiation, the major chal...
Linking cooperatively functioning cis-regulatory elements (CREs), specifically enhancers and promote...
A major challenge in understanding metazoan genomes is to find and annotate the regions that control...
Motivation: Evolutionarily conserved non-coding genomic sequences represent a potentially rich sourc...
MOTIVATION: Evolutionarily conserved non-coding genomic sequences represent a potentially rich sourc...
A central challenge in regulatory genomics today is to understand the precise relationship between r...
Identifying DNA cis-regulatory modules (CRMs) that control the expression of specific genes is cruci...
Although many studies proposed methods for the identification of enhancers, reliable prediction on a...
International audienceBACKGROUND: Regulation of gene expression plays a pivotal role in cellular fun...
We explore several computational approaches to analyzing interspecies genomic sequence alignments, a...
Motivation: Looping is one of the mechanisms responsible of gene regulation in eukaryotes. It is kno...