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Transcription start site analysis reveals widespread divergent transcription in D. melanogaster and core promoter-encoded enhancer activities

Sarah Rennie, Maria Dalby, Marta Lloret-Llinares, Stylianos Bakoulis, Christian Dalager Vaagenso, View ORCID ProfileTorben Heick Jensen, View ORCID ProfileRobin Andersson
doi: https://doi.org/10.1101/221952
Sarah Rennie
University of Copenhagen;
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Maria Dalby
University of Copenhagen;
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Marta Lloret-Llinares
Aarhus University
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Stylianos Bakoulis
University of Copenhagen;
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Christian Dalager Vaagenso
University of Copenhagen;
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Torben Heick Jensen
Aarhus University
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Robin Andersson
University of Copenhagen;
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  • For correspondence: robin@binf.ku.dk
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Abstract

Mammalian gene promoters and enhancers share many properties. They are composed of a unified promoter architecture of divergent transcripton initiation and gene promoters may exhibit enhancer function. However, it is currently unclear how expression strength of a regulatory element relates to its enhancer strength and if the unifying architecture is conserved across Metazoa. Here we investigate the transcription initiation landscape and its associated RNA decay in D. melanogaster. Surprisingly, we find that the majority of active gene-distal enhancers and a considerable fraction of gene promoters are divergently transcribed. We observe quantitative relationships between enhancer potential, expression level and core promoter strength, providing an explanation for indirectly related histone modifications that are reflecting expression levels. Lowly abundant unstable RNAs initiated from weak core promoters are key characteristics of gene-distal developmental enhancers, while the housekeeping enhancer strengths of gene promoters reflect their expression strengths. The different layers of regulation mediated by gene-distal enhancers and gene promoters are also reflected in chromatin interaction data. Our results suggest a unified promoter architecture of many D. melanogaster regulatory elements, that is universal across Metazoa, whose regulatory functions seem to be related to their core promoter elements.

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The copyright holder for this preprint is the author/funder. It is made available under a CC-BY 4.0 International license.
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  • Posted December 15, 2017.

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Transcription start site analysis reveals widespread divergent transcription in D. melanogaster and core promoter-encoded enhancer activities
Sarah Rennie, Maria Dalby, Marta Lloret-Llinares, Stylianos Bakoulis, Christian Dalager Vaagenso, Torben Heick Jensen, Robin Andersson
bioRxiv 221952; doi: https://doi.org/10.1101/221952
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Transcription start site analysis reveals widespread divergent transcription in D. melanogaster and core promoter-encoded enhancer activities
Sarah Rennie, Maria Dalby, Marta Lloret-Llinares, Stylianos Bakoulis, Christian Dalager Vaagenso, Torben Heick Jensen, Robin Andersson
bioRxiv 221952; doi: https://doi.org/10.1101/221952

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