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Updated: May 11, 2025

Author Spotlight: Exploring the Role of FAM83A in Cervical Cancer
Published on: February 9, 2024
Targeting Signaling Excitability in Cervical and Pancreatic Cancer Cells Through Combined Inhibition of FAK and PI3K
Chao-Cheng Chen1, Suyang Wang1, Jr-Ming Yang1
1Department of Pathology, Johns Hopkins Medical Institutions, Baltimore, MD 21231, USA.
Abstract:
The Ras/PI3K/ERK signaling network is frequently mutated and overactivated in various human cancers. Focal adhesion kinase (FAK) is commonly overexpressed in several cancer types and has been implicated in treatment resistance mechanisms. A positive feedback loop between Ras, PI3K, the cytoskeleton, and FAK was previously shown to drive Ras signaling excitability. In this study, we investigated the effectiveness of targeting Ras signaling excitability by concurrently inhibiting FAK and PI3K in cervical and pancreatic cancer cells, which depend on activation Ras/PI3K signaling. We found that the combination of FAK and PI3K inhibitors synergistically suppressed the growth of cervical and pancreatic cancer cell lines through increased apoptosis and decreased mitosis. PI3K inhibitors alone caused only a transient suppression of downstream AKT activity and paradoxically increased FAK signaling in cancer cells. The addition of an FAK inhibitor effectively counteracted this PI3K-inhibitor-induced FAK activation. Furthermore, PI3K inhibitors were found to activate multiple receptor tyrosine kinases (RTKs), including insulin receptor, IGF-1R, EGFR, HER2, HER3, AXL, and EphA2. Taken together, our results suggest that FAK inhibition is necessary to counteract the compensatory RTK activation induced by PI3K inhibitors, thereby achieving more effective suppression of cancer cell growth. These findings highlight the therapeutic potential of combined FAK and PI3K inhibition in cancer treatment.
Insights
Combining focal adhesion kinase (FAK) and phosphoinositide 3-kinase (PI3K) inhibitors synergistically suppresses cancer cell growth. This dual inhibition is crucial for overcoming resistance by blocking compensatory signaling pathways activated by PI3K inhibitors alone.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling Pathways
Background:
- Ras/PI3K/ERK pathway dysregulation drives human cancers.
- Focal adhesion kinase (FAK) overexpression is linked to cancer progression and treatment resistance.
- A positive feedback loop involving Ras, PI3K, and FAK promotes Ras signaling excitability.
Purpose of the Study:
- To evaluate the efficacy of combined FAK and PI3K inhibition in cervical and pancreatic cancer.
- To investigate the mechanisms underlying the synergistic effects of dual inhibition.
Main Methods:
- Utilized cervical and pancreatic cancer cell lines dependent on Ras/PI3K signaling.
- Administered combination therapy with FAK and PI3K inhibitors.
- Assessed cell growth, apoptosis, mitosis, AKT activity, FAK signaling, and receptor tyrosine kinase (RTK) activation.
Main Results:
- Combined FAK and PI3K inhibition synergistically suppressed cancer cell growth via increased apoptosis and reduced mitosis.
- PI3K inhibitors alone caused transient AKT suppression and paradoxical FAK activation.
- FAK inhibition effectively countered PI3K-inhibitor-induced FAK activation and compensatory RTK activation (including EGFR, HER2, AXL).
Conclusions:
- Concurrent FAK and PI3K inhibition offers a potent strategy for cancer treatment.
- FAK inhibition is essential to block compensatory RTK activation induced by PI3K inhibitors.
- This combination therapy holds significant therapeutic potential for overcoming resistance in Ras/PI3K-driven cancers.
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