Notch-Dependent Expression of the Drosophila Hey Gene Is Supported by a Pair of Enhancers with Overlapping Activities

Author:

Monastirioti Maria1,Koltsaki Ioanna123,Pitsidianaki Ioanna124ORCID,Skafida Emilia125ORCID,Batsiotos Nikolaos126,Delidakis Christos12ORCID

Affiliation:

1. Institute of Molecular Biology and Biotechnology (IMBB), Foundation for Research and Technology-Hellas (FORTH), 70013 Heraklion, Greece

2. Department of Biology, University of Crete, 70013 Heraklion, Greece

3. Division of Tumor Metabolism and Microenvironment, German Cancer Research Center (DKFZ), 69120 Heidelberg, Germany

4. Department of Cell and Developmental Biology, University College London (UCL), London WC1E 6BT, UK

5. Istituto di Ricovero e Cura a Carattere Scientifico (IRCCS), Foundation Saint Lucia, Rome and School of Medicine and Surgery, University of Milano-Bicocca (UniMiB), 20900 Monza, Italy

6. Evotec SE, 22419 Hamburg, Germany

Abstract

Drosophila Hey is a basic helix–loop–helix–orange (bHLH-O) protein with an important role in the establishment of distinct identities of postmitotic cells. We have previously identified Hey as a transcriptional target and effector of Notch signalling during the asymmetric division of neuronal progenitors, generating neurons of two types, and we have shown that Notch-dependent expression of Hey also marks a subpopulation of the newborn enteroendocrine (EE) cells in the midgut primordium of the embryo. Here, we investigate the transcriptional regulation of Hey in neuronal and intestinal tissues. We isolated two genomic regions upstream of the promoter (HeyUP) and in the second intron (HeyIN2) of the Hey gene, based on the presence of binding motifs for Su(H), the transcription factor that mediates Notch activity. We found that both regions can direct the overlapping expression patterns of reporter transgenes recapitulating endogenous Hey expression. Moreover, we showed that while HeyIN2 represents a Notch-dependent enhancer, HeyUP confers both Notch-dependent and independent transcriptional regulation. We induced mutations that removed the Su(H) binding motifs in either region and then studied the enhancer functionality in the respective Hey mutant lines. Our results provide direct evidence that although both enhancers support Notch-dependent regulation of the Hey gene, their role is redundant, as a Hey loss-of-function lethal phenotype is observed only after deletion of all their Su(H) binding motifs by CRISPR/Cas9.

Funder

Greek Ministry of Education grant Thalis “AdiSC”

2019 Fondation Santé grant

intramural Institute of Molecular Biology and Biotechnology

Publisher

MDPI AG

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