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The chemotactic response to PDGF-BB: evidence of a role for Ras
V Kundra1, B Anand-Apte, L A Feig
1Department of Cell Biology, Children's Hospital, Harvard Medical School, Boston, Massachusetts 02115, USA.
Abstract:
The PDGF receptor-beta mediates both mitogenic and chemotactic responses to PDGF-BB. Although the role of Ras in tyrosine kinase-mediated mitogenesis has been characterized extensively, its role in PDGF-stimulated chemotaxis has not been defined. Using cells expressing a dominant-negative ras, we find that Ras inhibition suppresses migration toward PDGF-BB. Overexpression of either Ras-GTPase activating protein (Ras-GAP) or a Ras guanine releasing factor (GRF) also inhibited PDGF-stimulated chemotaxis. In addition, cells producing excess constitutively active Ras failed to migrate toward PDGF-BB, consistent with the observation that either excess ligand or excess signaling intermediate can suppress the chemotactic response. These results suggest that Ras can function in normal cells to support chemotaxis toward PDGF-BB and that either too little or too much Ras activity can abrogate the chemotactic response. In contrast to Ras overexpression, cells producing excess constitutively active Raf, a downstream effector of Ras, did migrate toward PDGF-BB. Cells expressing dominant-negative Ras were able to migrate toward soluble fibronectin demonstrating that these cells retained the ability to migrate. These results suggest that Ras is an intermediate in PDGF-stimulated chemotaxis but may not be required for fibronectin-stimulated cell motility.
Insights
Ras signaling is crucial for platelet-derived growth factor (PDGF)-BB-stimulated cell migration. Both insufficient and excessive Ras activity impair chemotaxis, highlighting a narrow optimal range for this key signaling pathway.
Area of Science:
- Cellular Biology
- Molecular Biology
- Biochemistry
Background:
- Platelet-derived growth factor receptor-beta (PDGFR-beta) mediates cellular responses to PDGF-BB.
- The role of Ras in mitogenesis is well-established, but its function in PDGF-stimulated chemotaxis remains unclear.
Purpose of the Study:
- To investigate the role of Ras signaling in PDGF-BB-induced chemotaxis.
- To determine the impact of altered Ras activity on cell migration.
Main Methods:
- Utilized cells expressing dominant-negative Ras.
- Overexpressed Ras-GTPase activating protein (Ras-GAP) and Ras guanine releasing factor (GRF).
- Examined cells with constitutively active Ras and Raf.
Main Results:
- Ras inhibition suppressed migration toward PDGF-BB.
- Overexpression of Ras-GAP or GRF also inhibited PDGF-stimulated chemotaxis.
- Excessive constitutively active Ras abrogated PDGF-BB chemotaxis, while excess Raf did not.
- Cells with dominant-negative Ras retained fibronectin-stimulated motility.
Conclusions:
- Ras functions as a critical intermediate in PDGF-BB-stimulated chemotaxis.
- Both insufficient and excessive Ras activity impair PDGF-BB-induced cell migration.
- Ras is likely not required for fibronectin-stimulated cell motility.