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Published on: November 28, 2019
PI3K activation allows immune evasion by promoting an inhibitory myeloid tumor microenvironment
Natalie B Collins1,2, Rose Al Abosy1, Brian C Miller3
1Department of Pediatric Oncology, Dana-Farber Cancer Institute, Boston, Massachusetts, USA.
Background:
Oncogenes act in a cell-intrinsic way to promote tumorigenesis. Whether oncogenes also have a cell-extrinsic effect on suppressing the immune response to cancer is less well understood.
Methods:
We use an in vivo expression screen of known cancer-associated somatic mutations in mouse syngeneic tumor models treated with checkpoint blockade to identify oncogenes that promote immune evasion. We then validated candidates from this screen in vivo and analyzed the tumor immune microenvironment of tumors expressing mutant protein to identify mechanisms of immune evasion.
Results:
We found that expression of a catalytically active mutation in phospho-inositol 3 kinase (PI3K), PIK3CA c.3140A>G (H1047R) confers a selective growth advantage to tumors treated with immunotherapy that is reversed by pharmacological PI3K inhibition. PIK3CA H1047R-expression in tumors decreased the number of CD8+ T cells but increased the number of inhibitory myeloid cells following immunotherapy. Inhibition of myeloid infiltration by pharmacological or genetic modulation of Ccl2 in PIK3CA H1047R tumors restored sensitivity to programmed cell death protein 1 (PD-1) checkpoint blockade.
Conclusions:
PI3K activation enables tumor immune evasion by promoting an inhibitory myeloid microenvironment. Activating mutations in PI3K may be useful as a biomarker of poor response to immunotherapy. Our data suggest that some oncogenes promote tumorigenesis by enabling tumor cells to avoid clearance by the immune system. Identification of those mechanisms can advance rational combination strategies to increase the efficacy of immunotherapy.
Insights
Activating mutations in phospho-inositol 3 kinase (PI3K) promote tumor immune evasion by creating an inhibitory myeloid microenvironment. This suggests PI3K mutations may predict poor immunotherapy response and guide combination strategies.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Oncogenes intrinsically promote tumor growth.
- The extrinsic role of oncogenes in immune suppression is less understood.
Purpose of the Study:
- Identify oncogenes promoting immune evasion using an in vivo screen.
- Investigate mechanisms of immune evasion driven by oncogenes.
Main Methods:
- In vivo expression screen of cancer-associated mutations in mouse models.
- Validation of candidate oncogenes and analysis of tumor immune microenvironment.
- Pharmacological and genetic modulation of pathways involved in immune evasion.
Main Results:
- PIK3CA H1047R mutation conferred growth advantage during immunotherapy, reversed by PI3K inhibition.
- PIK3CA H1047R tumors showed reduced CD8+ T cells and increased inhibitory myeloid cells.
- Inhibition of myeloid infiltration (CCL2) restored sensitivity to PD-1 blockade.
Conclusions:
- PI3K activation drives tumor immune evasion via an inhibitory myeloid microenvironment.
- Activating PI3K mutations may serve as biomarkers for immunotherapy response.
- Understanding oncogene-driven immune evasion can inform combination therapy strategies.
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