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Updated: Sep 25, 2026

Molecular Analysis of Endothelial-mesenchymal Transition Induced by Transforming Growth Factor-β Signaling
Published on: August 3, 2018
Glial cell-induced endothelial morphogenesis is inhibited by interfering with extracellular signal-regulated kinase
Nirmala Chandrasekar1, Sanjeeva Mohanam, S Sajani Lakka
1Program of Cancer Biology, University of Illinois College of Medicine at Peoria, Peoria, Illinois 61656, USA.
Purpose:
Tumor vasculature provides the infrastructure by which malignant tissue can be nourished; therefore, targeting angiogenesis may be an effective means of treating cancer. We showed previously that SNB19 glioblastoma cells modulate bovine retinal endothelial cells in cocultures to form capillary-like network structures, that matrix metalloproteinase-9 (MMP-9) expression is critical for endothelial morphogenesis, and that MMP-9 expression in glioblastoma cells is regulated by extracellular signal-regulated kinase-1 (ERK-1). In the present study, we investigated whether interfering with the activation of this mitogen-activated protein (MAP) kinase would repress MMP-9 synthesis and inhibit capillary formation.
Experimental Design:
Cocultures of bovine retinal endothelial and SNB19 cells were analyzed for MMP-9 secretion, and phospho- and total ERK levels. These cocultures were treated with PD98059, a specific inhibitor of MAP/ERK kinase 1, or transfected with dominant-negative ERK-1 mutant containing expression vector. Alterations in capillary-like structure formation, and actin cytoskeleton and secretion of vascular endothelial growth factor (VEGF), MMP-9, and tissue inhibitor of metalloproteinase-1 were determined by immunofluorescence, gelatin zymography, and Western blotting.
Results:
We found that inhibition of the ERK-1/2 pathway with PD98059 abrogated glial cell-mediated capillary formation by the endothelial cells and reduced the levels of MMP-9 in the coculture. Strikingly, the abrogation of MAP kinase signaling by a dominant-negative ERK-1 mutant inhibited glial-induced capillary network formation by reducing VEGF levels and MMP-9 activity and increasing the levels of tissue inhibitor of metalloproteinase-1. Inhibition of ERK activity also disrupted the formation of the actin cytoskeleton, a prerequisite for endothelial cell migration.
Conclusion:
The mechanism underlying activation of ERK is involved in reorganization of the actin cytoskeleton, and induction of VEGF and MMP-9, thereby stimulating endothelial cell morphogenesis. These studies clearly provide experimental evidence that ERK inhibition diminishes glial-induced endothelial-cell morphogenesis; therefore, interfering with ERK signaling may be a viable approach to target angiogenesis.
Insights
Inhibiting the ERK pathway blocks glioblastoma cells from forming new blood vessels by reducing MMP-9 and VEGF. This suggests targeting ERK signaling is a promising strategy for anti-angiogenesis cancer therapy.
Area of Science:
- Oncology
- Cell Biology
- Biochemistry
Background:
- Tumor growth relies on new blood vessel formation (angiogenesis).
- Glioblastoma cells can induce endothelial cells to form capillary-like structures.
- Matrix metalloproteinase-9 (MMP-9) and extracellular signal-regulated kinase-1 (ERK-1) are key regulators in this process.
Purpose of the Study:
- To investigate if inhibiting mitogen-activated protein (MAP) kinase activation represses MMP-9 synthesis.
- To determine if MAP kinase inhibition affects capillary formation in glioblastoma cocultures.
- To explore the role of ERK signaling in endothelial cell morphogenesis.
Main Methods:
- Cocultures of glioblastoma (SNB19) and bovine retinal endothelial cells were used.
- Cells were treated with PD98059 (an ERK inhibitor) or a dominant-negative ERK-1 mutant.
- MMP-9 secretion, ERK levels, capillary formation, actin cytoskeleton, and vascular endothelial growth factor (VEGF) were analyzed.
Main Results:
- ERK inhibition with PD98059 abrogated capillary formation and reduced MMP-9 levels.
- Dominant-negative ERK-1 mutant inhibited capillary network formation, reduced VEGF and MMP-9, and increased tissue inhibitor of metalloproteinase-1.
- ERK inhibition disrupted actin cytoskeleton formation, essential for endothelial cell migration.
Conclusions:
- ERK pathway activation is crucial for actin cytoskeleton reorganization, VEGF, and MMP-9 induction.
- ERK inhibition effectively diminishes glioblastoma-induced endothelial cell morphogenesis.
- Targeting ERK signaling represents a potential therapeutic strategy for anti-angiogenesis in cancer treatment.
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