Study / S1RUM1TZA2016-12-26
Genome-wide assessment of sequence-intrinsic enhancer responsiveness at single-base-pair resolution
Cosmas D Arnold, Muhammad A Zabidi, Michaela Pagani, Martina Rath, Katharina Schernhuber et al.
About this study
Gene expression is controlled by enhancers that activate transcription from the core promoters of their target genes. Although a key function of core promoters is to convert enhancer activities into gene transcription, whether and how strongly they activate transcription in response to an enhancer has not been systematically assessed on a genome-wide level. Here we describe self-transcribing active core promoter sequencing (STAP-seq), a method to determine the responsiveness of genomic sequences to enhancers, and apply it to the Drosophila melanogaster genome. We cloned candidate fragments at the position of the core promoter (also called minimal promoter) in reporter plasmids with or without a strong enhancer, transfected the resulting library into cells, and quantified the transcripts that initiated from each candidate for each setup by deep sequencing. In the presence of a single strong enhancer, the enhancer responsiveness of different sequences differs by several orders of magnitude, and different levels of responsiveness are associated with genes of different functions. We also identify sequence features that predict enhancer responsiveness and discuss how different core promoters are employed for the regulation of gene expression.
Full author list & citation
Cosmas D Arnold, Muhammad A Zabidi, Michaela Pagani, Martina Rath, Katharina Schernhuber, Tomáš Kazmar, Alexander Stark. Genome-wide assessment of sequence-intrinsic enhancer responsiveness at single-base-pair resolution. 2016-12-26. https://doi.org/10.1038/nbt.3739
Experiments 2
E7A09FL61
Randomly sheared Drosophila genomic fragments were cloned at the core-promoter position of an episomal reporter between the zfh1 enhancer and reporter ORF, with a matched enhancerless construct used to measure basal activity. Polyadenylated reporter transcripts were cap-enriched, UMI-counted, and mapped strand-specifically to identify transcription initiation at single-base-pair resolution.
E8WJ4RIZN
A reduced-complexity library made from 34 BACs covering approximately 5% of the Drosophila genome was tested in S2 cells with the zfh1 developmental enhancer. The packaged table contains the authors' published focused-library eTSS coordinate calls after their mapping, UMI-collapsing, focused-region, replicate, and eTSS selection procedures.