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Grafting of Beads into Developing Chicken Embryo Limbs to Identify Signal Transduction Pathways Affecting Gene Expression
Published on: January 17, 2016
Sef is synexpressed with FGFs during chick embryogenesis and its expression is differentially regulated by FGFs in
Haggar Harduf1, Einat Halperin, Ram Reshef
1Department of Biology, Technion-Israel Institute of Technology, Haifa 32000, Israel.
Abstract:
The signaling pathways leading to growth and patterning of various organs are tightly controlled during the development of any organism. These control mechanisms usually involve the utilization of feedback- and pathway-specific antagonists where the pathway induces the expression of its own antagonist. Sef is a feedback antagonist of fibroblast growth factor (FGF) signaling, which has been identified recently in zebrafish and mammals. Here, we report the isolation of chicken Sef (cSef) and demonstrate the conserved nature of the regulatory relationship with FGF signaling. In chick embryos, Sef is expressed in a pattern that coincides with many known sites of FGF signaling. In the developing limb, cSef is expressed in the mesoderm underlying the apical ectodermal ridge (AER) in the region known as the progress zone. cSef message first appeared after limb budding and AER formation. Expression was intense at stages of rapid limb outgrowth, and gradually decreased to almost undetectable levels when differentiation was clearly apparent. Gain- and loss-of-function experiments showed that FGFs differentially regulate the expression of cSef in various tissues. Thus, removal of the AER down-regulated cSef expression, and FGF2 but not FGF4 or FGF8 beads substituted for the AER in maintaining cSef expression. At sites where cSef is not normally expressed, FGF4 and FGF2, but not FGF8 beads, induced cSef expression. Our results demonstrate the complexity of cSef regulation by FGFs and point to FGF2 as a prime candidate in regulating cSef expression during normal limb development. The spatiotemporal pattern of cSef expression during limb development suggests a role for cSef in regulating limb outgrowth but not limb initiation.
Insights
Chicken Sef (cSef) acts as a feedback antagonist for fibroblast growth factor (FGF) signaling, crucial for embryonic development. This study confirms conserved FGF-Sef regulation in chick embryos, highlighting cSef
Area of Science:
- Developmental Biology
- Molecular Biology
- Genetics
Background:
- Organ development relies on tightly controlled signaling pathways.
- Feedback antagonists, like Sef, regulate pathway activity by inducing their own antagonists.
- Fibroblast growth factor (FGF) signaling is a key pathway in embryonic development.
Purpose of the Study:
- To isolate chicken Sef (cSef) and investigate its conserved regulatory relationship with FGF signaling.
- To elucidate the role of cSef in chick embryonic development, particularly limb outgrowth.
- To understand the complex regulation of cSef expression by different FGFs.
Main Methods:
- Isolation and characterization of chicken Sef (cSef).
- Analysis of cSef expression patterns in chick embryos using in situ hybridization.
- Gain- and loss-of-function experiments involving manipulation of the apical ectodermal ridge (AER) and application of FGF beads.
Main Results:
- cSef is expressed in chick embryos in patterns consistent with FGF signaling sites, notably in the developing limb mesoderm.
- cSef expression is regulated by FGFs; AER removal down-regulates cSef, while FGF2 and FGF4 beads can maintain or induce its expression.
- FGF2 appears to be a key regulator of cSef expression during limb development.
Conclusions:
- Chicken Sef (cSef) exhibits a conserved feedback antagonism with FGF signaling.
- cSef plays a role in regulating limb outgrowth, but not limb initiation, during embryonic development.
- FGF2 is a significant factor in the spatiotemporal regulation of cSef during chick limb development.
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