Elevated Hoxb5b expands vagal neural crest pool and blocks enteric neuronal development in zebrafish
Howard, A. G. A.; Nguyen, A. C.; Tworig, J.; Ravisankar, P.; Singleton, E. W.; Li, C.; Kotzur, G.; Waxman, J. S.; Uribe, R. A.
Show abstract
Neural crest cells (NCCs) are a migratory, transient, and multipotent stem cell population essential to vertebrate embryonic development, contributing to numerous cell lineages in the adult organism. While great strides have been made in elucidating molecular and cellular events that drive NCC specification, comprehensive knowledge of the genetic factors that orchestrate NCC developmental programs is still far from complete. We discovered that elevated Hoxb5b levels promoted an expansion of zebrafish NCCs, which persisted throughout multiple stages of development. Correspondingly, elevated Hoxb5b also specifically expanded expression domains of the vagal NCC markers foxd3 and phox2bb. Increases in NCCs were most apparent after pulsed ectopic Hoxb5b expression at early developmental stages, rather than later during differentiation stages, as determined using a novel transgenic zebrafish line. The increase in vagal NCCs early in development led to supernumerary Phox2b+ enteric neural progenitors, while leaving many other NCC-derived tissues without an overt phenotype. Surprisingly, these NCC-derived enteric progenitors failed to expand properly into sufficient quantities of enterically fated neurons and stalled in the gut tissue. These results suggest that while Hoxb5b participates in vagal NCC development as a driver of progenitor expansion, the supernumerary, ectopically localized NCC fail to initiate expansion programs in timely fashion in the gut. All together, these data point to a model in which Hoxb5b regulates NCCs both in a tissue specific and temporally restricted manner.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- In Toto imaging of early Enteric Nervous System Development reveals that gut colonization is tied to proliferation downstream of Ret 97%
- The Gq/11 family of Gα subunits is necessary and sufficient for lower jaw development 97%
- De novo enteric neurogenesis in post-embryonic zebrafish from Schwann cell precursors rather than resident cell types 96%
Similar papers in this journal
- Identification and characterization of intermediate states in mammalian neural crest cell epithelial to mesenchymal transition and delamination 97%
- Tgfbr1 regulates lateral plate mesoderm and endoderm reorganization during the trunk to tail transition 97%
- Completion of neural crest cell production and emigration is regulated by retinoic acid-dependent inhibition of BMP signaling 96%
Similar papers in this journal
- Heterochronically expressed midline netrin was recruited to guide mesoderm migration in epibolic gastrulation of the leech 96%
- Gsx2 Regulates Oligodendrocyte Precursor Formation in the Zebrafish Spinal Cord 96%
- Drivers of Vessel Progenitor Fate Define Intermediate Mesoderm Dimensions by Inhibiting Kidney Progenitor Specification 96%
Similar papers in this journal
- A hypomorphic mutation in Pold1 disrupts the coordination of embryo size expansion and morphogenesis during gastrulation 95%
- Segregation of brain and organizer precursors is differentially regulated by Nodal signaling at blastula stage 95%
- Shared and unique consequences of Joubert Syndrome gene dysfunction on the zebrafish central nervous system 95%
Similar papers in this journal
- BMP signaling pathway member expression is enriched in enteric neural progenitors and required for zebrafish enteric nervous system development 98%
- Transcriptional Regulators with Broad Expression in the Zebrafish Spinal Cord 95%
- Elp1 function in placode-derived neurons is critical for proper trigeminal ganglion development 95%
"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.