International audienceAs exome sequencing gives way to genome sequencing, the need to interpret the function of regulatory DNA becomes increasingly important. To test whether evolutionary conservation of cis-regulatory modules (CRMs) gives insight into human gene regulation, we determined transcription factor (TF) binding locations of four liver-essential TFs in liver tissue from human, macaque, mouse, rat, and dog. Approximately, two thirds of the TF-bound regions fell into CRMs. Less than half of the human CRMs were found as a CRM in the orthologous region of a second species. Shared CRMs were associated with liver pathways and disease loci identified by genome-wide association studies. Recurrent rare human disease causing mutations at th...
Abstract Background Transcription regulation is a major controller of gene expression dynamics durin...
Identifying DNA cis-regulatory modules (CRMs) that control the expression of specific genes is cruci...
Regulatory elements activate promoters by recruiting transcription factors (TFs) to specific motifs....
International audienceAs exome sequencing gives way to genome sequencing, the need to interpret the ...
SummaryTo mechanistically characterize the microevolutionary processes active in altering transcript...
Noncoding regulatory variants play a central role in the genetics of human diseases and in evolution...
Transcription factors (TFs) direct gene expression by binding to DNA regulatory regions. To explore ...
To broaden our understanding of the evolution of gene regulation mechanisms, we generated occupancy ...
<div><p>Large-scale gene expression datasets are providing an increasing understanding of the locati...
Combinatorial interactions among transcription factors are critical to directing tissue-specific gen...
Abstract Background Tissue gene expression is generally regulated by multiple transcription factors ...
Transcription factors play a key role in the development of a disease. ChIP-sequencing has become a ...
Recent technological advances have made it possible to determine the genome-wide binding sites of tr...
Our inability to associate distant regulatory elements with the genes that they regulate has largel...
Abstract Background Researchers seeking to unlock the genetic basis of human physiology and diseases...
Abstract Background Transcription regulation is a major controller of gene expression dynamics durin...
Identifying DNA cis-regulatory modules (CRMs) that control the expression of specific genes is cruci...
Regulatory elements activate promoters by recruiting transcription factors (TFs) to specific motifs....
International audienceAs exome sequencing gives way to genome sequencing, the need to interpret the ...
SummaryTo mechanistically characterize the microevolutionary processes active in altering transcript...
Noncoding regulatory variants play a central role in the genetics of human diseases and in evolution...
Transcription factors (TFs) direct gene expression by binding to DNA regulatory regions. To explore ...
To broaden our understanding of the evolution of gene regulation mechanisms, we generated occupancy ...
<div><p>Large-scale gene expression datasets are providing an increasing understanding of the locati...
Combinatorial interactions among transcription factors are critical to directing tissue-specific gen...
Abstract Background Tissue gene expression is generally regulated by multiple transcription factors ...
Transcription factors play a key role in the development of a disease. ChIP-sequencing has become a ...
Recent technological advances have made it possible to determine the genome-wide binding sites of tr...
Our inability to associate distant regulatory elements with the genes that they regulate has largel...
Abstract Background Researchers seeking to unlock the genetic basis of human physiology and diseases...
Abstract Background Transcription regulation is a major controller of gene expression dynamics durin...
Identifying DNA cis-regulatory modules (CRMs) that control the expression of specific genes is cruci...
Regulatory elements activate promoters by recruiting transcription factors (TFs) to specific motifs....