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Updated: Aug 13, 2026

Assessing Signaling Properties of Ectodermal Epithelia During Craniofacial Development
Published on: March 24, 2011
The expression of the receptor-protein tyrosine kinase gene, eck, is highly restricted during early mouse development
1Department of Biochemistry, Molecular Biology, and Cellular and Developmental Biology, Harvard University, Cambridge, MA 02138.
Abstract:
Cell-cell interactions during embryogenesis have been shown to be important for establishing developmental fates in a number of organisms such as Drosophila and Caenorhabditis. One class of genes shown to mediate this process are receptor-protein tyrosine kinases (R-PTKs). To examine whether R-PTKs might participate in similar mechanisms operating in the mammalian embryo, an important prerequisite is to show that these genes are expressed in spatial and temporal patterns consistent with such a role. Here, we analyze the expression of eck, a member of the eph family of R-PTKs, during gastrulation and early organogenesis by in situ hybridization. eck transcripts are first detected in gastrulation stage embryos (6.5-7.5 days post coitum (dpc)) in ectodermal cells adjacent to the distal region of the primitive streak. By the neural plate stage (approximately 7.5 dpc), eck expression becomes restricted to the extreme distal end or node of the primitive streak. After the beginning of somitogenesis (approximately 8.0 dpc), eck expression persists in the node as this structure regresses toward the caudal end of the embryo. In addition, beginning at the mid head fold stage (approximately 7.75 dpc), we observe that eck exhibits a dynamic and spatially restricted expression pattern in the prospective hindbrain region. eck transcripts are initially detected in a 5-cell wide strip of mesodermal cells underlying prospective rhombomere 4 (r4). Subsequently at the beginning of somitogenesis, eck mRNA expression is observed in prospective r4. At the 4--8-somite stage, eck transcripts are observed in r4, mesenchymal cells underlying r4, and surface ectoderm in the vicinity of the developing second branchial arch. By the 10-somite stage, eck mRNA expression in these cells is downregulated. Additionally, at the 5--8-somite stage, eck transcripts are detected initially in the lateral mesenchyme immediately underlying the surface ectoderm adjacent to r5 and r6, and subsequently in surface ectoderm overlying the developing third branchial arch. These data suggest that eck may be involved in cell-cell interactions guiding early hindbrain development.
Insights
Receptor-protein tyrosine kinases (R-PTKs) like eck are crucial for embryonic development. This study maps eck gene expression during mammalian gastrulation and hindbrain formation, revealing its role in cell-cell interactions.
Area of Science:
- Developmental Biology
- Molecular Embryology
- Gene Expression Analysis
Background:
- Cell-cell interactions are vital for establishing developmental fates during embryogenesis.
- Receptor-protein tyrosine kinases (R-PTKs) are a key class of genes mediating these interactions.
- Understanding R-PTK roles in mammalian embryos requires analyzing their spatiotemporal expression patterns.
Purpose of the Study:
- To investigate the expression patterns of the eck gene, an Eph family R-PTK, during mammalian gastrulation and early organogenesis.
- To determine if eck expression is consistent with a role in mediating cell-cell interactions during early embryonic development.
Main Methods:
- In situ hybridization was employed to analyze eck transcript localization in mouse embryos.
- Expression patterns were examined across various developmental stages, from gastrulation (6.5-7.5 days post coitum) through early organogenesis (up to 10-somite stage).
Main Results:
- Eck transcripts were initially detected in ectodermal cells near the primitive streak during gastrulation.
- Expression later localized to the node of the primitive streak and subsequently to the prospective hindbrain region, specifically around rhombomere 4 (r4).
- Dynamic expression was observed in mesodermal and ectodermal tissues associated with hindbrain and branchial arch development, with subsequent downregulation.
Conclusions:
- The spatiotemporal expression of eck suggests its involvement in guiding cell-cell interactions during early mammalian hindbrain development.
- Eck may play a role in the formation of specific hindbrain segments and associated structures like branchial arches.
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