4.8 Article

Manipulating nucleosome disfavoring sequences allows fine-tune regulation of gene expression in yeast

Journal

NATURE GENETICS
Volume 44, Issue 7, Pages 743-U163

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/ng.2305

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Funding

  1. European Research Council (ERC)
  2. US National Institutes of Health (NIH)
  3. Azrieli Foundation

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Understanding how precise control of gene expression is specified within regulatory DNA sequences is a key challenge with far-reaching implications. Many studies have focused on the regulatory role of transcription factor-binding sites. Here, we explore the transcriptional effects of different elements, nucleosome-disfavoring sequences and, specifically, poly(dA:dT) tracts that are highly prevalent in eukaryotic promoters. By measuring promoter activity for a large-scale promoter library, designed with systematic manipulations to the properties and spatial arrangement of poly(dA:dT) tracts, we show that these tracts significantly and causally affect transcription. We show that manipulating these elements offers a general genetic mechanism, applicable to promoters regulated by different transcription factors, for tuning expression in a predictable manner, with resolution that can be even finer than that attained by altering transcription factor sites. Overall, our results advance the understanding of the regulatory code and suggest a potential mechanism by which promoters yielding prespecified expression patterns can be designed.

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