The Fd4 transcription factor translates transient spatial cues in progenitors into long-term lineage identity
Lai, S.-L.; Doe, C. Q.
Show abstract
Neural diversity is required for the brain to generate complex behaviors. During development, neural progenitors are exposed to different combination of transient spatial cues for their identity specification. This identity is then interpreted by their progeny to activate terminal selector genes to become lineage-specific neurons. After spatial cues fade, it remains unclear how progenitors maintain their unique identity so that their progeny express the accurate, lineage-specific terminal selector genes. Using single cell RNA sequencing in Drosophila, we identified a Forkhead domain transcription factor, Fd4, that is exclusively expressed in a single neural progenitor (neuroblast) and its new-born progeny. This neuroblast (NB), named NB7-1, forms at the intersection of the transient spatial cues Vnd (columnar expression) and En (row expression). We show that Fd4 expression overlaps spatial factor expression and terminal selector gene expression, thereby making Fd4 an excellent candidate for bridging transient spatial factors to lineage-specific terminal selector genes. We show that Fd4 is required for expression of terminal selector genes that maintain neuronal identity. Conversely, Fd4 misexpression generates ectopic NB7-1 progeny at the expense of Fd4-negative progenitor lineages. We conclude that Fd4 is continuously expressed in the NB7-1 and its new-born neuronal progeny where it activates terminal selector genes to produce lineage-specific neurons. We propose that Fd4 is a pioneering member of a class of "lineage identity genes" that translate transient spatial cues into a long-term lineage identity.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Castor is a temporal transcription factor that specifies early born central complex neuron identity 98%
- Seven-up acts in neuroblasts to specify adult central complex neuron identity and initiate neuroblast decommissioning 97%
- C. elegans LET-381/FoxF and DMD-4/DMRT control development of the mesodermal HMC endothelial cell 97%
Similar papers in this journal
Similar papers in this journal
- A gene regulatory network for specification and morphogenesis of a Mauthner Cell homolog in non-vertebrate chordates 97%
- Transcriptional profiling from whole embryos to single neuroblast lineages in Drosophila 97%
- The serine/threonine kinase Back seat driver prevents cell fusion to maintain cell identity 97%
Similar papers in this journal
Similar papers in this journal
- A developmental pathway for epithelial-to-motoneuron transformation in C. elegans 97%
- A natural transdifferentiation event involving mitosis is empowered by integrating signaling inputs with conserved plasticity factors 96%
- Simultaneous suppression of ribosome biogenesis and Tor activation by TRIM-NHL proteins promotes terminal differentiation 96%
"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.