Skip to Content
MilliporeSigma
  • Chibby functions in Xenopus ciliary assembly, embryonic development, and the regulation of gene expression.

Chibby functions in Xenopus ciliary assembly, embryonic development, and the regulation of gene expression.

Developmental biology (2014-09-16)
Jianli Shi, Ying Zhao, Domenico Galati, Mark Winey, Michael W Klymkowsky
ABSTRACT

Wnt signaling and ciliogenesis are core features of embryonic development in a range of metazoans. Chibby (Cby), a basal-body associated protein, regulates β-catenin-mediated Wnt signaling in the mouse but not Drosophila. Here we present an analysis of Cby's embryonic expression and morphant phenotypes in Xenopus laevis. Cby RNA is supplied maternally, negatively regulated by Snail2 but not Twist1, preferentially expressed in the neuroectoderm, and regulates β-catenin-mediated gene expression. Reducing Cby levels reduced the density of multiciliated cells, the number of basal bodies per multiciliated cell, and the numbers of neural tube primary cilia; it also led to abnormal development of the neural crest, central nervous system, and pronephros, all defects that were rescued by a Cby-GFP chimera. Reduction of Cby led to an increase in Wnt8a and decreases in Gli2, Gli3, and Shh RNA levels. Many, but not all, morphant phenotypes were significantly reversed by the Wnt inhibitor SFRP2. These observations extend our understanding of Cby's role in mediating the network of interactions between ciliogenesis, signaling systems and tissue patterning.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Anti-Tropomyosin (Sarcomeric) antibody, Mouse monoclonal, clone CH1, purified from hybridoma cell culture