Previous studies have analyzed patterns of transcription, Transcription Factor (TF) binding or mapped nucleosome occupancy across the genome. These suggest that the three aspects are genetically connected but the cause and effect relationships are still unknown. For example, physiologic TF binding studies involve many TFs, consequently, it is difficult to assign nucleosome reorganization to the binding site occupancy of any particular TF. Therefore, several aspects remain unclear: does TF binding influence nucleosome (re)organizations locally or impact the chromatin landscape at a more global level; are all or only a fraction of TF binding a result of reorganization in nucleosome occupancy and do all TF binding and associated changes in nuc...
Transcription factors (TFs) influence cell fate by interpreting the regulatory DNA within a genome. ...
Background: Transcription is affected by nucleosomal resistance against polymerase passage. In turn,...
Chromatin plays a central role in eukaryotic gene regulation. We have performed genome-wide mapping ...
Previous studies have analyzed patterns of transcription, Transcription Factor (TF) binding or mappe...
Nucleosomes regulate transcriptional initiation when positioned in the promoter area. This may requi...
Transcription factor (TF) binding to its DNA target site plays an essential role in gene regulation....
Transcription factor binding sites are found in either nucleosome-free or nucleosome-embedded locati...
Transcription factors (TFs) and histone octamers are two abundant classes of DNA binding proteins th...
Any living organism contains a whole set of instructions encoded as genes on the DNA. This set of in...
AbstractGenome-wide mapping of nucleosomes and histone modifications revealed meaningful patterns. D...
Gene expression is controlled by sequence-specific transcription factors (TFs), which bind to regula...
Organisms rely on the establishment of specific gene expression patterns to ensure proper developmen...
Accessibility of the genomic regulatory information is largely controlled by the nucleosome-organizi...
By wrapping the DNA around the histone core, nucleosomes intrinsically limit the availability of und...
Nucleosomes are believed to inhibit DNA binding by transcription factors. Theoretical attempts to un...
Transcription factors (TFs) influence cell fate by interpreting the regulatory DNA within a genome. ...
Background: Transcription is affected by nucleosomal resistance against polymerase passage. In turn,...
Chromatin plays a central role in eukaryotic gene regulation. We have performed genome-wide mapping ...
Previous studies have analyzed patterns of transcription, Transcription Factor (TF) binding or mappe...
Nucleosomes regulate transcriptional initiation when positioned in the promoter area. This may requi...
Transcription factor (TF) binding to its DNA target site plays an essential role in gene regulation....
Transcription factor binding sites are found in either nucleosome-free or nucleosome-embedded locati...
Transcription factors (TFs) and histone octamers are two abundant classes of DNA binding proteins th...
Any living organism contains a whole set of instructions encoded as genes on the DNA. This set of in...
AbstractGenome-wide mapping of nucleosomes and histone modifications revealed meaningful patterns. D...
Gene expression is controlled by sequence-specific transcription factors (TFs), which bind to regula...
Organisms rely on the establishment of specific gene expression patterns to ensure proper developmen...
Accessibility of the genomic regulatory information is largely controlled by the nucleosome-organizi...
By wrapping the DNA around the histone core, nucleosomes intrinsically limit the availability of und...
Nucleosomes are believed to inhibit DNA binding by transcription factors. Theoretical attempts to un...
Transcription factors (TFs) influence cell fate by interpreting the regulatory DNA within a genome. ...
Background: Transcription is affected by nucleosomal resistance against polymerase passage. In turn,...
Chromatin plays a central role in eukaryotic gene regulation. We have performed genome-wide mapping ...