BACKGROUND: Eukaryotic gene regulation is a complex process comprising the dynamic interaction of enhancers and promoters in order to activate gene expression. In recent years, research in regulatory genomics has contributed to a better understanding of the characteristics of promoter elements and for most sequenced model organism genomes there exist comprehensive and reliable promoter annotations. For enhancers, however, a reliable description of their characteristics and location has so far proven to be elusive. With the development of high-throughput methods such as ChIP-seq, large amounts of data about epigenetic conditions have become available, and many existing methods use the information on chromatin accessibility or histone modific...
Enhancers are distal cis-regulatory elements that modulate gene expression. They are depleted of nuc...
Accurate maps of promoters and enhancers are required for understanding transcriptional regulation. ...
Abstract Background Many genetic diseases are caused by mutations in non-coding regions of the genom...
Abstract Background Eukaryotic gene regulation is a complex process comprising the dynamic interacti...
Accurate maps of promoters and enhancers are required for understanding transcriptional regulation. ...
Accurate maps of promoters and enhancers are required for understanding transcriptional regulation. ...
BACKGROUND: The binding sites of transcription factors (TFs) and the localisation of histone modific...
AbstractAs a class of cis-regulatory elements, enhancers were first identified as the genomic region...
Enhancers are important non-coding elements, but they have traditionally been hard to characterize e...
With the recent identification of over 100 histone modifications in mammalian cell-types, there is a...
This dissertation describes the use of high-throughput molecular biological techniques and bioinform...
Background Enhancers are non-coding regions of the genome that control the activity of target genes....
We have developed a machine learning approach to predict stimulation-dependent enhancer-promoter int...
Enhancers are important noncoding elements, but they have been traditionally hard to characterize ex...
SummaryUnderstanding the regulation of human gene expression requires knowledge of the “second genet...
Enhancers are distal cis-regulatory elements that modulate gene expression. They are depleted of nuc...
Accurate maps of promoters and enhancers are required for understanding transcriptional regulation. ...
Abstract Background Many genetic diseases are caused by mutations in non-coding regions of the genom...
Abstract Background Eukaryotic gene regulation is a complex process comprising the dynamic interacti...
Accurate maps of promoters and enhancers are required for understanding transcriptional regulation. ...
Accurate maps of promoters and enhancers are required for understanding transcriptional regulation. ...
BACKGROUND: The binding sites of transcription factors (TFs) and the localisation of histone modific...
AbstractAs a class of cis-regulatory elements, enhancers were first identified as the genomic region...
Enhancers are important non-coding elements, but they have traditionally been hard to characterize e...
With the recent identification of over 100 histone modifications in mammalian cell-types, there is a...
This dissertation describes the use of high-throughput molecular biological techniques and bioinform...
Background Enhancers are non-coding regions of the genome that control the activity of target genes....
We have developed a machine learning approach to predict stimulation-dependent enhancer-promoter int...
Enhancers are important noncoding elements, but they have been traditionally hard to characterize ex...
SummaryUnderstanding the regulation of human gene expression requires knowledge of the “second genet...
Enhancers are distal cis-regulatory elements that modulate gene expression. They are depleted of nuc...
Accurate maps of promoters and enhancers are required for understanding transcriptional regulation. ...
Abstract Background Many genetic diseases are caused by mutations in non-coding regions of the genom...