Abstract
The T-box transcription factor eomesodermin (Eomes) has been implicated as an important component in germ layer induction and patterning in vertebrate embryos. In the mouse, Eomes is essential for development of the trophectoderm lineage and Eomes loss-of-function mutants arrest at implantation. Here, we have used a novel Eomes conditional allele to test Eomes functions in the embryo proper. Eomes-deficient embryos express both Fgf8 and its downstream target Snail at normal levels but surprisingly fail to downregulate E-cadherin. Eomes functional loss thus efficiently and profoundly blocks EMT and concomitant mesoderm delamination. Marker analysis as well as fate-mapping and chimera studies demonstrate for the first time that Eomes is required for specification of the definitive endoderm lineage. We also describe developmental abnormalities in Eomes/Nodaldouble heterozygotes, and demonstrate that these phenotypes reflect Eomes and Nodal interactions in different tissue sites. Collectively, our experiments establish that Eomes is a key regulator of anteroposterior axis formation, EMT and definitive endoderm specification in the mouse.
Keywords
Affiliated Institutions
Related Publications
Misexpression of <i>Cwnt8C</i> in the mouse induces an ectopic embryonic axis and causes a truncation of the anterior neuroectoderm
ABSTRACT Transgenic embryos expressing Cwnt8C under the control of the human β-actin promoter exhibit duplicated axes or a severely dorsalised phenotype. Although the transgene ...
The Mouse Snail Gene Encodes a Key Regulator of the Epithelial-Mesenchymal Transition
Snail family genes encode DNA binding zinc finger proteins that act as transcriptional repressors. Mouse embryos deficient for the Snail (Sna) gene exhibit defects in the format...
An Overview of Epithelio-Mesenchymal Transformation
Epithelium is the tissue phenotype of early embryos and primitive adults of the chordate phylum. A second tissue type, however, is produced by epithelial-mesenchymal transformat...
<i>nodal</i> expression in the primitive endoderm is required for specification of the anterior axis during mouse gastrulation
ABSTRACT Mouse nodal, a member of the TGFβ family of secreted growth factors is essential for gastrulation. We recently generated a nodallacZ reporter allele by homologous recom...
<i>Pax-2</i> is required for mesenchyme-to-epithelium conversion during kidney development
ABSTRACT The conversion of mesenchyme to epithelium during the embryonic development of the mammalian kidney requires reciprocal inductive interactions between the ureter and th...
Publication Info
- Year
- 2008
- Type
- article
- Volume
- 135
- Issue
- 3
- Pages
- 501-511
- Citations
- 275
- Access
- Closed
External Links
Social Impact
Social media, news, blog, policy document mentions
Citation Metrics
Cite This
Identifiers
- DOI
- 10.1242/dev.014357