Author:
Heisenberg Carl-Philipp,Houart Corinne,Take-uchi Masaya,Rauch Gerd-Jörg,Young Neville,Coutinho Pedro,Masai Ichiro,Caneparo Luca,Concha Miguel L.,Geisler Robert,Dale Trevor C.,Wilson Stephen W.,Stemple Derek L.
Abstract
Zebrafish embryos homozygous for the masterblind(mbl) mutation exhibit a striking phenotype in which the eyes and telencephalon are reduced or absent and diencephalic fates expand to the front of the brain. Here we show that mbl−/−embryos carry an amino-acid change at a conserved site in the Wnt pathway scaffolding protein, Axin1. The amino-acid substitution present in the mbl allele abolishes the binding of Axin to Gsk3 and affects Tcf-dependent transcription. Therefore, Gsk3 activity may be decreased in mbl−/− embryos and in support of this possibility, overexpression of either wild-type Axin1 or Gsk3β can restore eye and telencephalic fates to mbl−/−embryos. Our data reveal a crucial role for Axin1-dependent inhibition of the Wnt pathway in the early regional subdivision of the anterior neural plate into telencephalic, diencephalic, and eye-forming territories.
Publisher
Cold Spring Harbor Laboratory
Subject
Developmental Biology,Genetics
Cited by
238 articles.
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