About this study
Accumulating evidence indicates that both putative promoters and enhancers can exert dual promoter and enhancer functions. However, how these activities are related within individual elements and what determines this dual functionality remain poorly understood. We developed a massively parallel dual reporter assay that enables simultaneous assessment of the intrinsic promoter and enhancer potential exerted by the same sequence. Parallel quantification for thousands of elements reveals that canonical human promoters and enhancers can act as both promoters and enhancers under the same contexts, and that promoter activity may be necessary but not sufficient for enhancer function. Perturbations to element transcription factor binding motifs lead to disruptions in both activities, implicating a shared syntax for the two regulatory functions. Combinations of elements with different minimal promoters reveal reciprocal activity modulation, which, together with a strong correlation between promoter and enhancer functions, imply a bidirectional feedback loop to sustain environments of high transcriptional activity. Finally, we validate this reciprocity and correlation in situ using CRISPR activation at the human β-globin locus. Our approach reveals that the functional convergence between promoters and enhancers arises from a shared regulatory logic and sequence syntax, advancing a unified model for regulatory element biology.
Full author list & citation
Mauricio I. Paramo, Alden King-Yung Leung, Sagar R. Shah, Junke Zhang, Nathaniel D. Tippens, Jin Liang, Li Yao, Yiyang Jin, Xiuqi Pan, Abdullah Ozer, John T. Lis, Haiyuan Yu. Dual promoter–enhancer activities reflect a unified regulatory logic. 2026-01-30. https://doi.org/10.1038/s41467-026-68780-y
Experiments 4
E0AZJD69U
This derived view isolates the main pMYC QUASARR-seq library's matched wild-type and mutant constructs and compares their promoter and enhancer activity in the same orientation. It covers the paper's disease, population, GWAS, and synthetic variant categories and reports mutant-minus-WT effects.
E2ZXDNVHM
The main QUASARR-seq plasmid library measured intrinsic promoter and enhancer activity for the same candidate human regulatory elements in K-562 cells using paired paBC and eaBC barcode reporters. This table joins the two modality-specific measurements for each element and orientation and includes controls, annotations, and activity calls.
E4WGL9FC4
SOLARR-seq used a QUASARR-derived plasmid configuration to measure intrinsic enhancer activity for the regulatory-element collection without the downstream promoter/paBC reporter. The table contains orientation-level enhancer measurements with three DNA and three RNA biological replicates plus source activity-call statistics.
E7XWTIBYA
A matched QUASARR-seq library tested the same TRE collection with pGAPDH, pMYC, and pAPOBEC3F minimal promoters to measure how promoter context modulates enhancer and promoter readouts. The table is in long format, with one row per element, orientation, and minimal-promoter context.