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Cell type and tissue distribution of the fibroblast growth factor receptor
1Department of Biochemistry, University of Wisconsin, Madison 53706.
Abstract:
A receptor for fibroblast growth factor (aFGF, bFGF) was partially characterized in intact cell cultures, cell plasma membranes, and tissue plasma membrane preparations. Analysis of 24 different cell types from four species identified a 165-kDa FGF receptor present on the cell surface of most mesodermal and neuroectodermal cells. Chemical crosslinking of 125I-aFGF to its cell surface receptor was specifically blocked by a 100-fold molar excess of either aFGF or bFGF. In contrast to the similar molecular weight of FGF receptors, different cell types exhibited significant variations in binding of 125I-aFGF to intact cultures with low values of 8 pM and 700, to high values of 60 pM and 30,000, for the Kd and receptor number per cell, respectively. A binding assay was developed for quantitation of 125I-aFGF binding to cell- and tissue-derived membrane preparations. Membranes prepared from baby hamster kidney cells exhibited a Kd of 55 pM, while a similar Kd of 67 pM was determined for intact baby hamster kidney cells. Although ten different adult bovine tissue membrane preparations and human term placental membranes exhibited no specific binding of 125I-aFGF, FGF receptor was detected in embryonic murine tissues (17 days gestation). These results support the existence, in a variety of cells, of either a common FGF receptor that binds both aFGF and bFGF or closely related FGF receptors that cannot be distinguished by molecular weight. The differential binding of FGF to its receptor in embryonic vs. adult tissues suggests a potentially broad role for FGF in embryonic development and a more restrictive role in the adult.
Insights
Researchers identified a 165-kDa fibroblast growth factor (FGF) receptor on mesodermal and neuroectodermal cells. FGF receptor binding varied significantly across cell types, suggesting a broad role in embryonic development.
Area of Science:
- Cell Biology
- Developmental Biology
- Molecular Biology
Background:
- Fibroblast growth factor (FGF) plays crucial roles in cellular processes.
- Characterizing the FGF receptor is essential for understanding FGF signaling pathways.
Purpose of the Study:
- To characterize the fibroblast growth factor (FGF) receptor.
- To investigate the presence and binding properties of the FGF receptor in various cell types and tissues.
Main Methods:
- Chemical crosslinking of radiolabeled FGF to cell surface receptors.
- Binding assays using intact cell cultures and membrane preparations.
- Analysis of 24 cell types from four species and embryonic/adult tissues.
Main Results:
- A 165-kDa FGF receptor was identified on most mesodermal and neuroectodermal cells.
- Significant variations in FGF receptor binding affinity (Kd) and receptor number were observed across different cell types.
- FGF receptor was detected in embryonic murine tissues but not in adult bovine or human placental tissues.
Conclusions:
- Evidence supports a common or closely related FGF receptor binding both acidic and basic FGF.
- Differential binding in embryonic versus adult tissues suggests a significant role for FGF in embryonic development.
- The FGF receptor's role appears more restricted in adult tissues compared to embryonic development.