RAB23 coordinates early osteogenesis by repressing FGF10-pERK1/2 and GLI1.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 32662771.
- Also identified by DOI 10.7554/eLife.55829 and PMC identifier 7423339.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Mutations in the gene encoding <i>Ras-associated binding protein 23</i> (<i>RAB23</i>) cause Carpenter Syndrome, which is characterized by multiple developmental abnormalities including polysyndactyly and defects in skull morphogenesis. To understand how RAB23 regulates skull development, we generated <i>Rab23-</i>deficient mice that survive to an age where skeletal development can be studied. Along with polysyndactyly, these mice exhibit premature fusion of multiple sutures resultant from aberrant osteoprogenitor proliferation and elevated osteogenesis in the suture. FGF10-driven FGFR1 signaling is elevated in <i>Rab23<sup>-/-</sup></i>sutures with a consequent imbalance in MAPK, Hedgehog signaling and RUNX2 expression. Inhibition of elevated pERK1/2 signaling results in the normalization of osteoprogenitor proliferation with a concomitant reduction of osteogenic gene expression, and prevention of craniosynostosis. Our results suggest a novel role for RAB23 as an upstream negative regulator of both FGFR and canonical Hh-GLI1 signaling, and additionally in the non-canonical regulation of GLI1 through pERK1/2.
Medical subject headings
- Embryo, Mammalian
- Mice
- Osteogenesis
- rab GTP-Binding Proteins