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Information content differentiates enhancers from silencers in mouse photoreceptors.


ABSTRACT: Enhancers and silencers often depend on the same transcription factors (TFs) and are conflated in genomic assays of TF binding or chromatin state. To identify sequence features that distinguish enhancers and silencers, we assayed massively parallel reporter libraries of genomic sequences targeted by the photoreceptor TF cone-rod homeobox (CRX) in mouse retinas. Both enhancers and silencers contain more TF motifs than inactive sequences, but relative to silencers, enhancers contain motifs from a more diverse collection of TFs. We developed a measure of information content that describes the number and diversity of motifs in a sequence and found that, while both enhancers and silencers depend on CRX motifs, enhancers have higher information content. The ability of information content to distinguish enhancers and silencers targeted by the same TF illustrates how motif context determines the activity of cis-regulatory sequences.

SUBMITTER: Friedman RZ 

PROVIDER: S-EPMC8492058 | biostudies-literature | 2021 Sep

REPOSITORIES: biostudies-literature

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Information content differentiates enhancers from silencers in mouse photoreceptors.

Friedman Ryan Z RZ   Granas David M DM   Myers Connie A CA   Corbo Joseph C JC   Cohen Barak A BA   White Michael A MA  

eLife 20210906


Enhancers and silencers often depend on the same transcription factors (TFs) and are conflated in genomic assays of TF binding or chromatin state. To identify sequence features that distinguish enhancers and silencers, we assayed massively parallel reporter libraries of genomic sequences targeted by the photoreceptor TF cone-rod homeobox (CRX) in mouse retinas. Both enhancers and silencers contain more TF motifs than inactive sequences, but relative to silencers, enhancers contain motifs from a  ...[more]

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