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Role of FGF and noggin in neural crest induction
R Mayor1, N Guerrero, C Martínez
1Faculty of Science, University of Chile, Casilla 653, Santiago, Chile. rmayor@abello.seci.uchile.cl
Abstract:
A study of the molecules noggin and fibroblast growth factor (FGF) and its receptor in the induction of the prospective neural crest in Xenopus laevis embryos has been carried out, using the expression of the gene Xslu as a marker for the neural crest. We show that when a truncated FGF receptor (XFD) was expressed ectopically in order to block FGF signaling Xslu expression was inhibited. The effect of XFD on Xslu was specific and could be reversed by the coinjection of the wild-type FGF receptor (FGFR). Inhibition of Xslu expression by XFD is not a consequence of neural plate inhibition, as was shown by analyzing Xsox-2 expression. When ectoderm expressing XFD was transplanted into the prospective neural fold region of embryos Xslu induction was inhibited. The neural crest can also be induced by an interaction between neural plate and epidermis. As this induction is suppressed by the presence of XFD in the neural plate and not in the epidermis, it suggests that the neural crest is induced by FGF from the epidermis. However, treatment of neural plate with FGF was not able to induce Xslug expression, showing that in addition to FGF other non-FGF factors are also required. Previously we have suggested that the ectopic ventral expression of Xslu produced by overexpression of noggin mRNA resulted from an interaction of noggin with a ventral signal. Overexpression of XFD inhibits this effect, suggesting that FGF could be one component involved in this ventral signaling. Overexpression of FGFR produced a remarkable increase in the expression of Xslu in the posterior neural folds and around the blastopore. Injections in different blastomeres of the embryo suggest that the target cells of this effect are the ventral cells. Finally, we proposed a model in which the induction of the neural crests at the border of the neural plate requires functional FGF signaling, which possibly interacts with a neural inducer such as noggin.
Insights
Fibroblast growth factor (FGF) signaling is crucial for neural crest induction in Xenopus embryos. Blocking FGF signaling inhibits neural crest marker Xslu, suggesting FGF from epidermis is key, but other factors are also required.
Area of Science:
- Developmental biology
- Molecular biology
- Embryology
Background:
- The prospective neural crest is a crucial cell population in vertebrate development.
- Fibroblast growth factor (FGF) signaling pathways are implicated in various developmental processes.
- Noggin is a known signaling molecule involved in embryonic induction.
Purpose of the Study:
- To investigate the roles of noggin and fibroblast growth factor (FGF) signaling in neural crest induction in Xenopus laevis embryos.
- To identify the source of FGF involved in neural crest formation.
- To elucidate the interaction between FGF and other signaling molecules in neural crest development.
Main Methods:
- Using Xensopus laevis embryos as a model system.
- Employing Xslu gene expression as a marker for neural crest induction.
- Utilizing a truncated FGF receptor (XFD) to block FGF signaling.
- Performing ectopic expression of wild-type FGF receptor (FGFR) and noggin mRNA.
- Conducting transplantation experiments of ectoderm expressing XFD.
Main Results:
- Ectopic expression of XFD inhibited Xslu expression, indicating FGF signaling is necessary for neural crest induction.
- This inhibition was specific and reversible by coinjection of FGFR.
- FGF signaling from the epidermis, not the neural plate, appears to induce the neural crest.
- While FGF is necessary, other non-FGF factors are also required for Xslu induction.
- Overexpression of FGFR increased Xslu expression in ventral cells, suggesting FGF's role in ventral signaling.
Conclusions:
- Functional FGF signaling is essential for neural crest induction at the border of the neural plate.
- FGF signaling, likely originating from the epidermis, interacts with neural inducers like noggin.
- A model is proposed where FGF signaling and neural inducers cooperate for neural crest formation.