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In Vitro Model of Coronary Angiogenesis
Published on: March 10, 2020
Elevated Slit2 Activity Impairs VEGF-Induced Angiogenesis and Tumor Neovascularization in EphA2-Deficient Endothelium
Victoria Youngblood1, Shan Wang2, Wenqiang Song2
1Department of Cancer Biology, Vanderbilt University School of Medicine, Nashville, Tennessee.
Unlabelled:
Angiogenic remodeling during embryonic development and in adult tissue homeostasis is orchestrated by cooperative signaling between several distinct molecular pathways, which are often exploited by tumors. Indeed, tumors upregulate proangiogenic molecules while simultaneously suppressing angiostatic pathways to recruit blood vessels for growth, survival, and metastatic spread. Understanding how cancers exploit proangiogenic and antiangiogenic signals is a key step in developing new, molecularly targeted antiangiogenic therapies. While EphA2, a receptor tyrosine kinase (RTK), is required for VEGF-induced angiogenesis, the mechanism through which these pathways intersect remains unclear. Slit2 expression is elevated in EphA2-deficient endothelium, and here it is reported that inhibiting Slit activity rescues VEGF-induced angiogenesis in cell culture and in vivo, as well as VEGF-dependent tumor angiogenesis, in EphA2-deficient endothelial cells and animals. Moreover, blocking Slit activity or Slit2 expression in EphA2-deficient endothelial cells restores VEGF-induced activation of Src and Rac, both of which are required for VEGF-mediated angiogenesis. These data suggest that EphA2 suppression of Slit2 expression and Slit angiostatic activity enables VEGF-induced angiogenesis in vitro and in vivo, providing a plausible mechanism for impaired endothelial responses to VEGF in the absence of EphA2 function.
Implications:
Modulation of angiostatic factor Slit2 by EphA2 receptor regulates endothelial responses to VEGF-mediated angiogenesis and tumor neovascularization.
Insights
EphA2 receptor signaling suppresses Slit2, an angiostatic factor. This regulation is crucial for vascular endothelial growth factor (VEGF)-induced blood vessel formation in development and cancer.
Area of Science:
- Molecular biology
- Cell biology
- Cancer research
Background:
- Tumors hijack molecular pathways for blood vessel growth (angiogenesis).
- Understanding proangiogenic and antiangiogenic signals is key for targeted cancer therapies.
- The interaction between EphA2 receptor tyrosine kinase (RTK) and VEGF-induced angiogenesis is not fully understood.
Purpose of the Study:
- To elucidate the mechanism by which EphA2 intersects with VEGF-induced angiogenesis.
- To investigate the role of Slit2 in EphA2-deficient endothelial cells and its impact on angiogenesis.
Main Methods:
- Investigated Slit2 expression in EphA2-deficient endothelium.
- Assessed the effect of inhibiting Slit activity on VEGF-induced angiogenesis in vitro and in vivo.
- Examined the impact of blocking Slit activity on Src and Rac activation in EphA2-deficient endothelial cells.
Main Results:
- Slit2 expression is elevated in EphA2-deficient endothelium.
- Inhibiting Slit activity rescued VEGF-induced angiogenesis in cell culture and in vivo.
- Blocking Slit activity restored VEGF-induced activation of Src and Rac in EphA2-deficient endothelial cells.
Conclusions:
- EphA2 receptor signaling suppresses Slit2 and its angiostatic activity.
- This suppression enables VEGF-induced angiogenesis and tumor neovascularization.
- Provides a mechanism for impaired endothelial responses to VEGF in the absence of EphA2.
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