Sort   by:  
 Page size 
Enhancer-promoter (E-P) interactions regulate transcription for cell fate determination. However, the regulatory mechanisms of E-P interactions remain elusive. Here, a chromatin interaction-based proteomics approach, LoopID, was developed to profile the proteins at certain E-P anchors, which were te...
ORGANISM(S): Mus musculus (Mouse) 
2026-03-16 | PXD069064 | Pride
Substantial evidence supports the hypothesis that enhancers are critical regulators of cell type determination, orchestrating both positive and negative transcriptional programs; however, the basic mechanisms by which enhancers orchestrate interactions with cognate promoters during activation and re...
ORGANISM(S): Mus musculus 
Substantial evidence supports the hypothesis that enhancers are critical regulators of cell type determination, orchestrating both positive and negative transcriptional programs; however, the basic mechanisms by which enhancers orchestrate interactions with cognate promoters during activation and re...
ORGANISM(S): Mus musculus 
Recent epigenomic studies have predicted thousands of potential enhancers in the human genome. However, there has not been systematic characterization of target promoters for these potential enhancers. Using H3K4me2 as a mark for active enhancers, we identified genome-wide enhancer-promoter interact...
ORGANISM(S): Homo sapiens 
Transcriptional binding patterns involved in promoter-enhancer interactions.
Enhancer-promoter interactions in acheiropodia patient's cells
The Mediator complex regulates enhancer-promoter interactions [ChIP-seq]
The Mediator complex regulates enhancer-promoter interactions [Capture C]
The Mediator complex regulates enhancer-promoter interactions [ATAC-seq]
The Mediator complex regulates enhancer-promoter interactions [Cut&Tag]
Sort   by:  
 Page size