Wnt11 acts on dermomyotome cells to guide epaxial myotome morphogenesis.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 35522214.
- Also identified by DOI 10.7554/eLife.71845 and PMC identifier 9075960.
- 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
The dorsal axial muscles, or epaxial muscles, are a fundamental structure covering the spinal cord and vertebrae, as well as mobilizing the vertebrate trunk. To date, mechanisms underlying the morphogenetic process shaping the epaxial myotome are largely unknown. To address this, we used the medaka <i>zic1/zic4</i>-enhancer mutant <i>Double anal fin</i> (<i>Da</i>), which exhibits ventralized dorsal trunk structures resulting in impaired epaxial myotome morphology and incomplete coverage over the neural tube. In wild type, dorsal dermomyotome (DM) cells reduce their proliferative activity after somitogenesis. Subsequently, a subset of DM cells, which does not differentiate into the myotome population, begins to form unique large protrusions extending dorsally to guide the epaxial myotome dorsally. In <i>Da</i>, by contrast, DM cells maintain the high proliferative activity and mainly form small protrusions. By combining RNA- and ChIP-sequencing analyses, we revealed direct targets of Zic1, which are specifically expressed in dorsal somites and involved in various aspects of development, such as cell migration, extracellular matrix organization, and cell-cell communication. Among these, we identified <i>wnt11</i> as a crucial factor regulating both cell proliferation and protrusive activity of DM cells. We propose that dorsal extension of the epaxial myotome is guided by a non-myogenic subpopulation of DM cells and that <i>wnt11</i> empowers the DM cells to drive the coverage of the neural tube by the epaxial myotome.
Medical subject headings
- Oryzias
- Somites
- Wnt Proteins