Study / S5GZ0MBU32015-12-21

Genome-wide identification of hypoxia-induced enhancer regions

Nick Kamps-Hughes, Jessica L. Preston, Melissa A. Randel, Eric A. Johnson

About this study

Here we present a genome-wide method for de novo identification of enhancer regions. This approach enables massively parallel empirical investigation of DNA sequences that mediate transcriptional activation and provides a platform for discovery of regulatory modules capable of driving context-specific gene expression. The method links fragmented genomic DNA to the transcription of randomer molecule identifiers and measures the functional enhancer activity of the library by massively parallel sequencing. We transfected a Drosophila melanogaster library into S2 cells in normoxia and hypoxia, and assayed 4,599,881 genomic DNA fragments in parallel. The locations of the enhancer regions strongly correlate with genes up-regulated after hypoxia and previously described enhancers. Novel enhancer regions were identified and integrated with RNAseq data and transcription factor motifs to describe the hypoxic response on a genome-wide basis as a complex regulatory network involving multiple stress-response pathways. This work provides a novel method for high-throughput assay of enhancer activity and the genome-scale identification of 31 hypoxia-activated enhancers in Drosophila.

Full author list & citation

Nick Kamps-Hughes, Jessica L. Preston, Melissa A. Randel, Eric A. Johnson. Genome-wide identification of hypoxia-induced enhancer regions. 2015-12-21. https://doi.org/10.7717/peerj.1527

Experiments 1

E0IKE8XIF

Genome-wide hypoxia-responsive enhancer screen in Drosophila S2 cells

A randomly sheared Oregon-R Drosophila melanogaster genomic library containing 4,599,881 approximately 400–500 bp fragments was transiently delivered to S2 cells and assayed under atmospheric normoxia and 0.5% O2 hypoxia. Three biological replicates per condition were quantified through 20N randomer tags in the reporter 5′ UTR; this package retains the 31 published hypoxia-induced enhancer regions that passed the authors’ discovery criteria, with their sequences and annotations.

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Raw source data 6 files

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