Study / S36E9IULL2015-10-20

Promoter-distal RNA polymerase II binding discriminates active from inactive CCAAT/enhancer-binding protein beta binding sites

Daniel Savic, Brian S. Roberts, Julia B. Carleton, E. Christopher Partridge, Michael A. White et al.

About this study

Transcription factors (TFs) bind to thousands of DNA sequences in mammalian genomes, but most of these binding events appear to have no direct effect on gene expression. It is unclear why only a subset of TF bound sites are actively involved in transcriptional regulation. Moreover, the key genomic features that accurately discriminate between active and inactive TF binding events remain ambiguous. Recent studies have identified promoter-distal RNA polymerase II (RNAP2) binding at enhancer elements, suggesting that these interactions may serve as a marker for active regulatory sequences. Despite these correlative analyses, a thorough functional validation of these genomic co-occupancies is still lacking. To characterize the gene regulatory activity of DNA sequences underlying promoter-distal TF binding events that co-occur with RNAP2 and TF sites devoid of RNAP2 occupancy using a functional reporter assay, we performed cis-regulatory element sequencing (CRE-seq). We tested more than 1000 promoter-distal CCAAT/enhancer-binding protein beta (CEBPB)-bound sites in HepG2 and K562 cells, and found that CEBPB-bound sites co-occurring with RNAP2 were more likely to exhibit enhancer activity. CEBPB-bound sites further maintained substantial cell-type specificity, indicating that local DNA sequence can accurately convey cell-type–specific regulatory information. By comparing our CRE-seq results to a comprehensive set of genome annotations, we identified a variety of genomic features that are strong predictors of regulatory element activity and cell-type–specific activity. Collectively, our functional assay results indicate that RNAP2 occupancy can be used as a key genomic marker that can distinguish active from inactive TF bound sites.

Full author list & citation

Daniel Savic, Brian S. Roberts, Julia B. Carleton, E. Christopher Partridge, Michael A. White, Barak A. Cohen, Gregory M. Cooper, Jason Gertz, Richard M. Myers. Promoter-distal RNA polymerase II binding discriminates active from inactive CCAAT/enhancer-binding protein beta binding sites. 2015-10-20. https://doi.org/10.1101/gr.191593.115

Experiments 2

E3385XMCZ

K562 CRE-seq episomal enhancer MPRA

An array-synthesized CRE-seq library tested 120-bp sequences centered on CEBPB ChIP-seq summits and dinucleotide-preserving scrambled controls, with four unique 9-bp barcodes per element. The library was transfected into K562 cells in two independent experiments and assayed using matched plasmid DNA and reporter RNA/cDNA barcode counts.

Episomal Plasmid MPRAHumanhg19
Explore data
E6DLX7WVQ

HepG2 CRE-seq episomal enhancer MPRA

An array-synthesized CRE-seq library tested 120-bp sequences centered on CEBPB ChIP-seq summits and dinucleotide-preserving scrambled controls, with four unique 9-bp barcodes per element. The library was transfected into HepG2 cells in two independent experiments and assayed using matched plasmid DNA and reporter RNA/cDNA barcode counts.

Episomal Plasmid MPRAHumanhg19
Explore data

Raw source data 5 files

Original supplemental and deposited inputs retained for this study. Download files individually or together as a ZIP; nested folders are preserved. Source reuse terms apply, and sequencing reads may be omitted.

Download all 5 files (ZIP)article_fulltext.xmlGSE73183_cre_seq_aligned_counts.txt.gzGSE73183_family.soft.gzGSE73183_record.txtsource_notes.txt

Cite OpenMPRA

Cite the OpenMPRA database. Include your access date because the collection changes over time.

Please also cite the source studies when using their data.