3D chromatin organization plays an important role in transcription regulation and gene expression. The 3D genome is highly maintained by several architectural proteins, such as CTCF, Yin Yang 1, and cohesin complex. This structural organization brings regulatory DNA elements in close proximity to their target promoters. In this review, we discuss the 3D chromatin organization of super-enhancers and their relationship to phase-separated condensates. Super-enhancers are large clusters of DNA elements. They can physically contact with their target promoters by chromatin looping during transcription. Multiple transcription factors can bind to enhancer and promoter sequences and recruit a complex array of transcriptional co-activators and RNA po...
Although our knowledge of chromatin organization has advanced significantly in recent years, much ab...
Super-enhancers are large clusters of transcriptional enhancers that drive expression of genes that ...
Higher-order chromosomal organization for transcription regulation is poorly understood in eukaryote...
3D chromatin organization plays an important role in transcription regulation and gene expression. T...
Complex biochemical reactions take place in the nucleus all the time. Transcription machines must fo...
Cancer development and progression are demarcated by transcriptional dysregulation, which is largely...
A growing body of research on the transcriptome and cancer genome has demonstrated that many gynecol...
Recently, unique areas of transcriptional regulation termed super-enhancers have been identified and...
It is now well established that genome organization plays a major role in its functioning. Enhancers...
Abstract Background Super-enhancers or stretch enhancers are clusters of active enhancers that often...
Summary Higher-order chromosomal organization for transcription regulation is poorly understood in e...
CTCF is crucial to the organization of mammalian genomes into loop structures. According to recent s...
Super-enhancers (SEs) are clusters of enhancers that cooperatively assemble a high density of the tr...
Metazoans utilize a constellation of distal regulatory elements to control gene transcription, and t...
SummarySuper-enhancers are large clusters of transcriptional enhancers that drive expression of gene...
Although our knowledge of chromatin organization has advanced significantly in recent years, much ab...
Super-enhancers are large clusters of transcriptional enhancers that drive expression of genes that ...
Higher-order chromosomal organization for transcription regulation is poorly understood in eukaryote...
3D chromatin organization plays an important role in transcription regulation and gene expression. T...
Complex biochemical reactions take place in the nucleus all the time. Transcription machines must fo...
Cancer development and progression are demarcated by transcriptional dysregulation, which is largely...
A growing body of research on the transcriptome and cancer genome has demonstrated that many gynecol...
Recently, unique areas of transcriptional regulation termed super-enhancers have been identified and...
It is now well established that genome organization plays a major role in its functioning. Enhancers...
Abstract Background Super-enhancers or stretch enhancers are clusters of active enhancers that often...
Summary Higher-order chromosomal organization for transcription regulation is poorly understood in e...
CTCF is crucial to the organization of mammalian genomes into loop structures. According to recent s...
Super-enhancers (SEs) are clusters of enhancers that cooperatively assemble a high density of the tr...
Metazoans utilize a constellation of distal regulatory elements to control gene transcription, and t...
SummarySuper-enhancers are large clusters of transcriptional enhancers that drive expression of gene...
Although our knowledge of chromatin organization has advanced significantly in recent years, much ab...
Super-enhancers are large clusters of transcriptional enhancers that drive expression of genes that ...
Higher-order chromosomal organization for transcription regulation is poorly understood in eukaryote...