Rdh10-mediated Retinoic Acid Signaling Regulates the Neural Crest Cell Microenvironment During ENS Formation
Butler Tjaden, N. E.; Shannon, S. R.; Seidel, C. W.; Childers, M.; Aoto, K.; Sandell, L. L.; Trainor, P.
Show abstract
The enteric nervous system (ENS) is formed from vagal neural crest cells (NCC), which generate most of the neurons and glia that regulate gastrointestinal function. Defects in the migration or differentiation of NCC in the gut can result in gastrointestinal disorders such as Hirschsprung disease (HSCR). Although mutations in many genes have been associated with the etiology of HSCR, a significant proportion of affected individuals have an undetermined genetic diagnosis. Therefore, its important to identify new genes, modifiers and environmental factors that regulate ENS development and disease. Rdh10 catalyzes the first oxidative step in the metabolism of vitamin A to its active metabolite, RA, and is therefore a central regulator of vitamin A metabolism and retinoic acid (RA) synthesis during embryogenesis. We discovered that retinol dehydrogenase 10 (Rdh10) loss-of-function mouse embryos exhibit intestinal aganglionosis, characteristic of HSCR. Vagal NCC form and migrate in Rdh10 mutant embryos but fail to invade the foregut. Rdh10 is highly expressed in the mesenchyme surrounding the entrance to the foregut and is essential between E7.5-E9.5 for NCC invasion into the gut. Comparative RNA-sequencing revealed downregulation of the Ret-Gdnf-Gfr1 gene signaling network in Rdh10 mutants, which is critical for vagal NCC chemotaxis. Furthermore, the composition of the extracellular matrix through which NCC migrate is also altered, in part by increased collagen deposition. Collectively this restricts NCC entry into the gut, demonstrating that Rdh10-mediated vitamin A metabolism and RA signaling pleiotropically regulates the NCC microenvironment during ENS formation and in the pathogenesis of intestinal aganglionosis.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Lineage-specific intersection of endothelin and GDNF signaling in enteric nervous system development 95%
- Single-cell profiling coupled with lineage analysis reveals distinct sacral neural crest contributions to the developing enteric nervous 94%
- Cell-type diversity and regionalized gene expression in the planarian intestine revealed by laser-capture microdissection transcriptome profiling 94%
Similar papers in this journal
- Tristetraprolin prevents gastric metaplasia in mice by suppressing pathogenic inflammation 94%
- GATA4 regulates epithelial morphogenesis in the developing mouse stomach to promote establishment of a glandular columnar epithelium 93%
- GFAP-directed Inactivation of Men1 Exploits Glial Cell Plasticity in Favor of Neuroendocrine Reprogramming 93%
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 94%
- Mesenchymal Osr1+ cells regulate embryonic lymphatic vessel formation 93%
- Epidermal cell fusion promotes the transition from an embryonic to a larval transcriptome in C. elegans 93%
Similar papers in this journal
- Wild-type bone marrow cells repopulate tissue resident macrophages and reverse the impacts of homozygous CSF1R mutation. 95%
- mTOR activity is essential for retinal pigment epithelium regeneration in zebrafish 93%
- The USH3A causative gene clarin1 functions in Muller glia to maintain retinal photoreceptors 93%
"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.