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Published on: October 11, 2012
Role of FGFs in the control of programmed cell death during limb development
J A Montero1, Y Gañan, D Macias
1Departamento de Ciencias Morfológicas y Biología Celular y Animal, Universidad de Extremadura, Badajoz 06071, Spain.
Abstract:
We have investigated the role of FGFs in the control of programmed cell death during limb development by analyzing the effects of increasing and blocking FGF signaling in the avian limb bud. BMPs are currently considered as the signals responsible for cell death. Here we show that FGF signaling is also necessary for apoptosis and that the establishment of the areas of cell death is regulated by the convergence of FGF- and BMP-mediated signaling pathways. As previously demonstrated, cell death is inhibited for short intervals (12 hours) after administration of FGFs. However, this initial inhibition is followed (24 hours) by a dramatic increase in cell death, which can be abolished by treatments with a BMP antagonist (Noggin or Gremlin). Conversely, blockage of FGF signaling by applying a specific FGF-inhibitor (SU5402) into the interdigital regions inhibits both physiological cell death and that mediated by exogenous BMPs. Furthermore, FGF receptors 1, 2 and 3 are expressed in the autopodial mesoderm during the regression of the interdigital tissue, and the expression of FGFR3 in the interdigital regions is regulated by FGFs and BMPs in the same fashion as apopotosis. Together our findings indicate that, in the absence of FGF signaling BMPs are not sufficient to trigger apoptosis in the developing limb. Although we provide evidence for a positive influence of FGFs on BMP gene expression, the physiological implication of FGFs in apoptosis appears to result from their requirement for the expression of genes of the apoptotic cascade. We have identified MSX2 and Snail as candidate genes associated with apoptosis the expression of which requires the combined action of FGFs and BMPs.
Insights
Fibroblast Growth Factors (FGFs) are crucial for programmed cell death in limb development, working alongside Bone Morphogenetic Proteins (BMPs). FGF signaling is necessary for apoptosis, with combined FGF and BMP pathways regulating cell death areas.
Area of Science:
- Developmental Biology
- Molecular Biology
- Cell Biology
Background:
- Programmed cell death (apoptosis) is vital for limb development.
- Bone Morphogenetic Proteins (BMPs) are traditionally considered the primary signals inducing apoptosis.
- The precise role of Fibroblast Growth Factors (FGFs) in this process remains incompletely understood.
Purpose of the Study:
- To investigate the role of FGF signaling in regulating programmed cell death during avian limb development.
- To elucidate the interplay between FGF and BMP signaling pathways in controlling apoptosis in the limb bud.
Main Methods:
- Manipulating FGF signaling by administering FGFs or using an FGF inhibitor (SU5402) in avian limb buds.
- Analyzing the effects on programmed cell death and gene expression.
- Investigating the expression patterns of FGF receptors (FGFRs) and candidate apoptosis-related genes (MSX2, Snail).
Main Results:
- FGF signaling is necessary for apoptosis; blocking FGF inhibits cell death induced by BMPs.
- While FGFs initially inhibit apoptosis, they subsequently induce a dramatic increase, which can be blocked by BMP antagonists.
- FGFRs are expressed in the developing limb, and FGFR3 expression correlates with apoptosis and is regulated by FGFs and BMPs.
- FGFs are required for the expression of genes in the apoptotic cascade, including MSX2 and Snail, highlighting a synergistic role with BMPs.
Conclusions:
- FGF signaling is essential for initiating programmed cell death in limb development, acting in concert with BMP signaling.
- BMPs alone are insufficient to trigger apoptosis without FGF signaling.
- FGFs regulate apoptosis by controlling the expression of key genes within the apoptotic cascade, such as MSX2 and Snail.
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