Genome-wide mapping of autonomous promoter activity in human cells

The intrinsic strength of promoter sequences in driving transcription is measured across the human genome. Previous methods to systematically characterize sequence-intrinsic activity of promoters have been limited by relatively low throughput and the length of the sequences that could be tested. Her...

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Veröffentlicht in:Nature biotechnology 2017-02, Vol.35 (2), p.145-153
Hauptverfasser: van Arensbergen, Joris, FitzPatrick, Vincent D, de Haas, Marcel, Pagie, Ludo, Sluimer, Jasper, Bussemaker, Harmen J, van Steensel, Bas
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Sprache:eng
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Zusammenfassung:The intrinsic strength of promoter sequences in driving transcription is measured across the human genome. Previous methods to systematically characterize sequence-intrinsic activity of promoters have been limited by relatively low throughput and the length of the sequences that could be tested. Here we present 'survey of regulatory elements' (SuRE), a method that assays more than 10 8 DNA fragments, each 0.2–2 kb in size, for their ability to drive transcription autonomously. In SuRE, a plasmid library of random genomic fragments upstream of a 20-bp barcode is constructed, and decoded by paired-end sequencing. This library is used to transfect cells, and barcodes in transcribed RNA are quantified by high-throughput sequencing. When applied to the human genome, we achieve 55-fold genome coverage, allowing us to map autonomous promoter activity genome-wide in K562 cells. By computational modeling we delineate subregions within promoters that are relevant for their activity. We show that antisense promoter transcription is generally dependent on the sense core promoter sequences, and that most enhancers and several families of repetitive elements act as autonomous transcription initiation sites.
ISSN:1087-0156
1546-1696
DOI:10.1038/nbt.3754