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In vitro Enrichment of Ovarian Cancer Tumor-initiating Cells
Published on: February 18, 2015
Tumor FAK orchestrates immunosuppression in ovarian cancer via the CD155/TIGIT axis
Duygu Ozmadenci1, Jayanth S Shankara Narayanan2, Jacob Andrew1
1Department of Obstetrics, Gynecology, and Reproductive Sciences, Moores University of California San Diego (UCSD) Cancer Center, La Jolla, CA 92093.
Abstract:
High-grade serous ovarian cancer (HGSOC) is a lethal malignancy characterized by an immunosuppressive tumor microenvironment containing few tumor infiltrating lymphocytes (TILs) and an insensitivity to checkpoint inhibitor immunotherapies. Gains in the PTK2 gene encoding focal adhesion kinase (FAK) at Chr8 q24.3 occur in ∼70% of HGSOC tumors, and elevated FAK messenger RNA (mRNA) levels are associated with poor patient survival. Herein, we show that active FAK, phosphorylated at tyrosine-576 within catalytic domain, is significantly increased in late-stage HGSOC tumors. Active FAK costained with CD155, a checkpoint receptor ligand for TIGIT (T cell immunoreceptor with immunoglobulin and immunoreceptor tyrosine-based inhibitory motif domains), in HGSOC tumors and a selective association between FAK and TIGIT checkpoint ligands were supported by patient transcriptomic database analysis. HGSOC tumors with high FAK expression were associated with low CD3 mRNA levels. Accordingly, late-stage tumors showed elevated active FAK staining and significantly lower levels of CD3+ TILs. Using the KMF (Kras, Myc, FAK) syngeneic ovarian tumor model containing spontaneous PTK2 (FAK) gene gains, the effects of tumor intrinsic genetic or oral small molecule FAK inhibitior (FAKi; VS-4718) were evaluated in vivo. Blocking FAK activity decreased tumor burden, suppressed ascites KMF-associated CD155 levels, and increased peritoneal TILs. The combination of FAKi with blocking TIGIT antibody (1B4) maintained elevated TIL levels and reduced TIGIT+ T regulatory cell levels, prolonged host survival, increased CXCL13 levels, and led to the formation of omental tertiary lymphoid structures. Collectively, our studies support FAK and TIGIT targeting as a rationale immunotherapy combination for HGSOC.
Insights
Targeting focal adhesion kinase (FAK) and TIGIT enhances immunotherapy in high-grade serous ovarian cancer (HGSOC). Combining FAK inhibition with TIGIT blockade increases tumor-infiltrating lymphocytes (TILs) and improves survival in HGSOC models.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- High-grade serous ovarian cancer (HGSOC) presents an immunosuppressive tumor microenvironment, limiting the efficacy of current immunotherapies.
- Focal adhesion kinase (FAK) gene gains and elevated expression are common in HGSOC and correlate with poor patient survival.
- FAK activity is linked to checkpoint receptor ligands like CD155, which interact with TIGIT on T cells, contributing to immune evasion.
Purpose of the Study:
- To investigate the role of active FAK in HGSOC immune evasion.
- To evaluate the therapeutic potential of FAK inhibition alone and in combination with TIGIT blockade in HGSOC models.
Main Methods:
- Analysis of active FAK (phosphorylated at Tyr576) and CD155 expression in HGSOC tumors.
- Correlation of FAK expression with tumor-infiltrating lymphocytes (TILs) using patient transcriptomic data.
- In vivo studies using a syngeneic HGSOC model (Kras, Myc, FAK) treated with a FAK inhibitor (FAKi) and/or a TIGIT blocking antibody.
Main Results:
- Active FAK levels are increased in late-stage HGSOC and associate with reduced CD3+ TILs and elevated CD155.
- FAK inhibition in vivo decreased tumor burden, reduced CD155, and increased TILs.
- Combination therapy (FAKi + anti-TIGIT) enhanced TIL levels, reduced regulatory T cells, prolonged survival, and promoted tertiary lymphoid structures.
Conclusions:
- Active FAK plays a critical role in the immunosuppressive microenvironment of HGSOC.
- Targeting FAK and TIGIT concurrently represents a promising immunotherapy strategy for HGSOC.
- This combination approach warrants further investigation for clinical translation in ovarian cancer treatment.
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