Notch signaling and Bsh homeodomain activity are integrated to diversify Drosophila lamina neuron types
Xu, C.; Ramos, T. B.; Marshall, O.; Doe, C. Q.
Show abstract
Notch signaling is an evolutionarily conserved pathway for specifying binary neuronal fates, yet how it specifies different fates in different contexts remains elusive. In our accompanying paper, using the Drosophila lamina neuron types (L1-L5) as a model, we show that the primary homeodomain transcription factor (HDTF) Bsh activates secondary HDTFs Ap (L4) and Pdm3 (L5) and specifies L4/L5 neuronal fates. Here we test the hypothesis that Notch signaling enables Bsh to differentially specify L4 and L5 fates. We show asymmetric Notch signaling between newborn L4 and L5 neurons, but they are not siblings; rather, Notch signaling in L4 is due to Delta expression in adjacent L1 neurons. While Notch signaling and Bsh expression are mutually independent, Notch is necessary and sufficient for Bsh to specify L4 fate over L5. The NotchON L4, compared to NotchOFF L5, has a distinct open chromatin landscape which allows Bsh to bind distinct genomic loci, leading to L4-specific identity gene transcription. We propose a novel model in which Notch signaling is integrated with the primary HDTF activity to diversify neuron types by directly or indirectly generating a distinct open chromatin landscape that constrains the pool of genes that a primary HDTF can activate.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Photoreceptors generate neuronal diversity in their target field through a Hedgehog morphogen gradient in Drosophila 96%
- Enhancer architecture sensitizes cell specific responses to Notch gene dose via a bind and discard mechanism 96%
- Origin of wiring specificity in an olfactory map: dendrite targeting of projection neurons 96%
Similar papers in this journal
- Seven-up acts in neuroblasts to specify adult central complex neuron identity and initiate neuroblast decommissioning 96%
- Dendrites with specialized glial attachments develop by retrograde extension using SAX-7 and GRDN-1 96%
- The exon junction complex component EIF4A3 is essential for mouse and human cortical progenitor mitosis and neurogenesis 95%
Similar papers in this journal
- A developmental pathway for epithelial-to-motoneuron transformation in C. elegans 96%
- The Epithelial Na+ Channel UNC-8 promotes an endocytic mechanism that recycles presynaptic components from old to new boutons in remodeling neurons 95%
- A bHLH interaction code controls bipotential differentiation and self-renewal in the Drosophila gut 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.