Study / S588FVF7G2019-01-08

Systematic interrogation of human promoters

Shira Weingarten-Gabbay, Ronit Nir, Shai Lubliner, Eilon Sharon, Yael Kalma et al.

About this study

Despite much research, our understanding of the architecture and cis-regulatory elements of human promoters is still lacking. Here, we devised a high-throughput assay to quantify the activity of approximately 15,000 fully designed sequences that we integrated and expressed from a fixed location within the human genome. We used this method to investigate thousands of native promoters and preinitiation complex (PIC) binding regions followed by in-depth characterization of the sequence motifs underlying promoter activity, including core promoter elements and TF binding sites. We find that core promoters drive transcription mostly unidirectionally and that sequences originating from promoters exhibit stronger activity than those originating from enhancers. By testing multiple synthetic configurations of core promoter elements, we dissect the motifs that positively and negatively regulate transcription as well as the effect of their combinations and distances, including a 10-bp periodicity in the optimal distance between the TATA and the initiator. By comprehensively screening 133 TF binding sites, we find that in contrast to core promoters, TF binding sites maintain similar activity levels in both orientations, supporting a model by which divergent transcription is driven by two distinct unidirectional core promoters sharing bidirectional TF binding sites. Finally, we find a striking agreement between the effect of binding site multiplicity of individual TFs in our assay and their tendency to appear in homotypic clusters throughout the genome. Overall, our study systematically assays the elements that drive expression in core and proximal promoter regions and sheds light on organization principles of regulatory regions in the human genome.

Full author list & citation

Shira Weingarten-Gabbay, Ronit Nir, Shai Lubliner, Eilon Sharon, Yael Kalma, Adina Weinberger, Eran Segal. Systematic interrogation of human promoters. 2019-01-08. https://doi.org/10.1101/gr.236075.118

Experiments 1

E4DZ0FRFU

AAVS1-integrated promoter activity and noise MPRA in K562

A single library of 15,753 fully designed 200-mer oligos representing native promoter/PIC regions and synthetic core-promoter and transcription-factor configurations was integrated into the AAVS1 safe-harbor locus of K562 cells. Single-copy integrants were sorted into 16 eGFP/mCherry expression bins, and oligo barcode sequencing was used to estimate promoter activity and cell-to-cell noise.

Targeted Genomic Integration MPRAHumanhg19
Explore data

Raw source data 16 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 16 files (ZIP)GSE118242_family.soft.gzGSM3323461_oligos_measurements_processed_data.tab.gzsource_notes.txtsupp_29_2_171__index.htmlsupp_gr.236075.118_Supplemental_Material.pdfsupp_gr.236075.118_Supplemental_Table_S1.docxsupp_gr.236075.118_Supplemental_Table_S10.zipsupp_gr.236075.118_Supplemental_Table_S11.zipsupp_gr.236075.118_Supplemental_Table_S2.zipsupp_gr.236075.118_Supplemental_Table_S3.zipsupp_gr.236075.118_Supplemental_Table_S4.xlssupp_gr.236075.118_Supplemental_Table_S5.docxsupp_gr.236075.118_Supplemental_Table_S6.docxsupp_gr.236075.118_Supplemental_Table_S7.zipsupp_gr.236075.118_Supplemental_Table_S8.zipsupp_gr.236075.118_Supplemental_Table_S9.zip

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