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CBF-Beta Mitigates PI3K-Alpha-Specific Inhibitor Killing through PIM1 in PIK3CA-Mutant Gastric Cancer
Lyla J Stanland1, Hazel X Ang2, Jacob P Hoj2
1Department of Molecular Genetics and Microbiology, Duke University School of Medicine, Durham, North Carolina.
Abstract:
PIK3CA is the second most mutated gene in cancer leading to aberrant PI3K/AKT/mTOR signaling and increased translation, proliferation, and survival. Some 4%-25% of gastric cancers display activating PIK3CA mutations, including 80% of Epstein-Barr virus-associated GCs. Small molecules, including pan-PI3K and dual PI3K/mTOR inhibitors, have shown moderate success clinically, due to broad on-target/off-tissue effects. Thus, isoform-specific and mutant selective inhibitors have been of significant interest. However, drug resistance is a problem and has affected success of new drugs. There has been a concerted effort to define mechanisms of resistance and identify potent combinations in many tumor types, though gastric cancer is comparatively understudied. In this study, we identified modulators of the response to the PI3Kα-specific inhibitor, BYL719, in PIK3CA-mutant GCs. We found that loss of NEDD9 or inhibition of BCL-XL conferred hypersensitivity to BYL719, through increased cell-cycle arrest and cell death, respectively. In addition, we discovered that loss of CBFB conferred resistance to BYL719. CBFB loss led to upregulation of the protein kinase PIM1, which can phosphorylate and activate several overlapping downstream substrates as AKT thereby maintaining pathway activity in the presence of PI3Kα inhibition. The addition of a pan-PIM inhibitor re-sensitized resistant cells to BYL719. Our data provide clear mechanistic insights into PI3Kα inhibitor response in PIK3CA-mutant gastric tumors and can inform future work as mutant-selective inhibitors are in development for diverse tumor types.
Implications:
Loss of either NEDD9 or BCL-XL confers hypersensitivity to PI3K-alpha inhibition whereas loss of CBFB confers resistance through a CBFB/PIM1 signaling axis.
Insights
Researchers identified key factors influencing PI3Kα inhibitor response in gastric cancer. Loss of NEDD9 or BCL-XL sensitizes tumors, while CBFB loss confers resistance via PIM1 signaling, offering new therapeutic strategies.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Activating PIK3CA mutations are common in gastric cancers, driving aberrant PI3K/AKT/mTOR signaling.
- Current PI3K inhibitors face challenges due to on-target/off-tissue effects and drug resistance.
- Isoform-specific and mutant-selective inhibitors are of significant interest, but resistance mechanisms require further study, especially in gastric cancer.
Purpose of the Study:
- To identify modulators of response to the PI3Kα-specific inhibitor BYL719 in PIK3CA-mutant gastric cancers.
- To elucidate mechanisms of drug sensitivity and resistance to PI3Kα inhibition.
- To inform the development of novel combination therapies for gastric cancer.
Main Methods:
- Utilized cell models of PIK3CA-mutant gastric cancer.
- Investigated the effects of genetic alterations (NEDD9, BCL-XL, CBFB loss) on sensitivity to BYL719.
- Analyzed signaling pathways, including PIM1 and AKT activation.
- Assessed the efficacy of combining BYL719 with a pan-PIM inhibitor.
Main Results:
- Loss of NEDD9 or BCL-XL conferred hypersensitivity to BYL719, leading to increased cell-cycle arrest and cell death.
- Loss of CBFB conferred resistance to BYL719 by upregulating PIM1 kinase.
- PIM1 activation maintained downstream AKT signaling, bypassing PI3Kα inhibition.
- Combining BYL719 with a pan-PIM inhibitor re-sensitized resistant cells.
Conclusions:
- NEDD9 and BCL-XL loss are potential biomarkers for enhanced response to PI3Kα inhibitors.
- The CBFB/PIM1 axis represents a novel mechanism of resistance to PI3Kα inhibitors in gastric cancer.
- Targeting PIM1 in combination with PI3Kα inhibitors may overcome resistance and improve treatment outcomes.
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