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RAS interaction with PI3K p110α is required for tumor-induced angiogenesis
Abstract:
Direct interaction of RAS with the PI3K p110α subunit mediates RAS-driven tumor development: however, it is not clear how p110α/RAS-dependant signaling mediates interactions between tumors and host tissues. Here, using a murine tumor cell transfer model, we demonstrated that disruption of the interaction between RAS and p110α within host tissue reduced tumor growth and tumor-induced angiogenesis, leading to improved survival of tumor-bearing mice, even when this interaction was intact in the transferred tumor. Furthermore, functional interaction of RAS with p110α in host tissue was required for efficient establishment and growth of metastatic tumors. Inhibition of RAS and p110α interaction prevented proper VEGF-A and FGF-2 signaling, which are required for efficient angiogenesis. Additionally, disruption of the RAS and p110α interaction altered the nature of tumor-associated macrophages, inducing expression of markers typical for macrophage populations with reduced tumor-promoting capacity. Together, these results indicate that a functional RAS interaction with PI3K p110α in host tissue is required for the establishment of a growth-permissive environment for the tumor, particularly for tumor-induced angiogenesis. Targeting the interaction of RAS with PI3K has the potential to impair tumor formation by altering the tumor-host relationship, in addition to previously described tumor cell-autonomous effects.
Insights
Disrupting the interaction between RAS and PI3K p110α in host tissue inhibits tumor growth and angiogenesis. This strategy improves survival by altering the tumor-host relationship and macrophage function.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- RAS-driven tumors rely on interactions between RAS and PI3K p110α.
- The role of p110α/RAS-dependent signaling in tumor-host interactions is not fully understood.
Purpose of the Study:
- To investigate the impact of disrupting the RAS-p110α interaction within host tissue on tumor development and angiogenesis.
- To explore the potential of targeting this interaction as a therapeutic strategy.
Main Methods:
- Utilized a murine tumor cell transfer model.
- Disrupted the RAS-p110α interaction specifically within host tissues.
- Assessed tumor growth, angiogenesis, and macrophage populations.
Main Results:
- Disruption of host RAS-p110α interaction reduced tumor growth and angiogenesis, improving mouse survival.
- This disruption impaired VEGF-A and FGF-2 signaling, crucial for angiogenesis.
- Altered tumor-associated macrophages towards a less tumor-promoting phenotype.
Conclusions:
- A functional RAS-p110α interaction in host tissue is essential for establishing a pro-tumorigenic environment, particularly for angiogenesis.
- Targeting the RAS-PI3K interaction offers a novel therapeutic approach by modifying the tumor-host relationship and tumor cell-autonomous effects.
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