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p38 Mitogen-activated protein kinase regulation of endothelial cell migration depends on urokinase plasminogen
Jianqiang Yu1, Dafang Bian, Chitladda Mahanivong
1Department of Immunology, The Scripps Research Institute, La Jolla, California 92037, USA.
Abstract:
The migration of endothelial cells in response to various stimulating factors plays an essential role in angiogenesis. The p38 MAPK pathway has been implicated to play an important role in endothelial cell migration because inhibiting p38 MAPK activity down-regulates vascular endothelial growth factor (VEGF)-stimulated migration. Currently, the signaling components in the p38 MAPK activation pathway and especially the mechanisms responsible for p38 MAPK-regulated endothelial cell migration are not well understood. In the present study, we found that p38 MAPK activity is required for endothelial cell migration stimulated by both VEGF and nongrowth factor stimulants, sphingosine 1-phosphate and soluble vascular cell adhesion molecule. By using dominant negative forms of signaling components in the p38 MAPK pathway, we identified that a regulatory pathway consisting of MKK3-p38alpha/gamma-MAPK-activated protein kinase 2 participated in VEGF-stimulated migration. In further studies, we showed that a minimum of a 10-h treatment with SB203580 (specific p38 MAPK inhibitor) was needed to block VEGF-stimulated migration, suggesting an indirect role of p38 MAPK in this cellular event. Most interestingly, the occurrence of SB203580-induced migratory inhibition coincided with a reduction of urokinase plasminogen activator (uPA) expression. Furthermore, agents disrupting uPA and uPA receptor interaction abrogated VEGF-stimulated cell migration. These results suggest a possible association between cell migration and uPA expression. Indeed, VEGF-stimulated migration was not compromised by SB203580 in endothelial cells expressing the uPA transgene; however, VEGF-stimulated migration was inhibited by agents disrupting uPA-uPA receptor interaction. These results thus suggest that the p38 MAPK pathway participates in endothelial cell migration by regulating uPA expression.
Insights
The p38 MAPK pathway regulates endothelial cell migration by controlling urokinase plasminogen activator (uPA) expression. This pathway is crucial for angiogenesis and is indirectly involved in cell movement.
Area of Science:
- Cell Biology
- Molecular Biology
- Angiogenesis Research
Background:
- Endothelial cell migration is vital for angiogenesis.
- The p38 MAPK pathway is implicated in endothelial cell migration, but its mechanisms remain unclear.
- Vascular Endothelial Growth Factor (VEGF) stimulates endothelial cell migration.
Purpose of the Study:
- To elucidate the role and mechanisms of the p38 MAPK pathway in endothelial cell migration.
- To identify specific signaling components involved in VEGF-stimulated migration.
- To investigate the relationship between p38 MAPK activity and urokinase plasminogen activator (uPA) expression.
Main Methods:
- Utilized dominant-negative signaling components to map the p38 MAPK pathway.
- Administered SB203580, a p38 MAPK inhibitor, to assess its impact on migration.
- Investigated the role of urokinase plasminogen activator (uPA) and its receptor in cell migration.
- Employed uPA transgene expression in endothelial cells to study rescue effects.
Main Results:
- p38 MAPK activity is essential for endothelial cell migration stimulated by VEGF and other factors.
- A pathway involving MKK3-p38alpha/gamma-MAPK-activated protein kinase 2 mediates VEGF-stimulated migration.
- SB203580 treatment inhibited migration, suggesting an indirect role for p38 MAPK.
- Inhibition of p38 MAPK led to reduced uPA expression, and uPA-receptor interaction was critical for migration.
Conclusions:
- The p38 MAPK pathway regulates endothelial cell migration indirectly by modulating uPA expression.
- uPA and its receptor interaction are key mediators of VEGF-stimulated endothelial cell migration.
- Findings reveal a novel mechanism linking p38 MAPK signaling to angiogenesis via uPA regulation.
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