Study / S3TVS9GUW2020-09-21
Transcription imparts architecture, function and logic to enhancer units
Nathaniel D. Tippens, Jin Liang, Alden King-Yung Leung, Shayne D. Wierbowski, Abdullah Ozer et al.
About this study
Distal enhancers play pivotal roles in development and disease yet remain one of the least understood regulatory elements. We used massively parallel reporter assays to perform functional comparisons of two leading enhancer models and find that gene-distal transcription start sites are robust predictors of active enhancers with higher resolution than histone modifications. We show that active enhancer units are precisely delineated by active transcription start sites, validate that these boundaries are sufficient for capturing enhancer function, and confirm that core promoter sequences are necessary for this activity. We assay adjacent enhancers and find that their joint activity is often driven by the stronger unit within the cluster. Finally, we validate these results through functional dissection of a distal enhancer cluster using CRISPR-Cas9 deletions. In summary, definition of high-resolution enhancer boundaries enables deconvolution of complex regulatory loci into modular units.
Full author list & citation
Nathaniel D. Tippens, Jin Liang, Alden King-Yung Leung, Shayne D. Wierbowski, Abdullah Ozer, James G. Booth, John T. Lis, Haiyuan Yu. Transcription imparts architecture, function and logic to enhancer units. 2020-09-21. https://doi.org/10.1038/s41588-020-0686-2
Experiments 3
E3CTKOYS1
Individual human enhancer units and pooled synthetic pairs of those units were tested in K562 cells using an episomal eSTARR-seq reporter with the MYC promoter. Randomly paired units were joined with a constant 25-bp linker to evaluate whether adjacent enhancer activities combine or are dominated by the stronger unit.
E3K8T4B5A
K562 cells were electroporated with an episomal eSTARR-seq library of human genomic candidate elements and controls downstream of the synthetic core promoter SCP1. Both forward and reverse cloning orientations were assayed, and enhancer activity was quantified from RNA/DNA UMI ratios across three biological replicates.
E93ABCIT3
K562 cells were electroporated with an episomal eSTARR-seq library of human genomic candidate elements and controls downstream of the human MYC promoter. Both forward and reverse cloning orientations were assayed, and enhancer activity was quantified from RNA/DNA UMI ratios across three biological replicates.