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Heregulin-ErbB3-Driven Tumor Growth Persists in PI3 Kinase Mutant Cancer Cells
Defne Yarar1, Johanna Lahdenranta2, William Kubasek2
1Merrimack Pharmaceuticals, Cambridge, Massachusetts. dyarar@merrimackpharma.com gmacbeath@merrimackpharma.com.
Abstract:
PI3K is frequently mutated in cancer and plays an important role in cell growth and survival. Heregulin (HRG)-mediated autocrine or paracrine signaling through the receptor tyrosine kinase ErbB3 potently activates the PI3K/AKT pathway and has been shown to mediate resistance to a wide variety of anticancer agents. Although PI3K functions downstream of HRG-ErbB3, it is unknown whether activating mutations in PI3K render HRG ineffective. If so, patients with PI3K mutations would not be expected to benefit from ErbB3-directed therapies. Here, we find that a subset of cell lines harboring activating PI3K mutations can be further growth-stimulated by HRG, and this effect is blocked by incubation with seribantumab (MM-121), a monoclonal anti-ErbB3 antibody. Although expression of mutant PI3K in wild-type PI3K cells frequently results in loss of HRG-stimulated growth, some cell lines continue to respond to HRG. In cell lines where HRG-stimulated growth is lost, this loss is invariably accompanied by a reduction in ErbB3 levels, a corresponding increase in basal phosphorylation levels of FOXO-family transcription factors, and a reduction in HRG-induced downstream signaling. Importantly, HRG-stimulated growth is partially rescued by re-expressing ErbB3. This response is blocked by seribantumab, indicating that ErbB3 levels rather than downstream signaling proteins limit HRG-stimulated growth in PI3K mutant cells. Overall, these results suggest that activating mutations in PI3K do not preclude potential benefit from ErbB3-directed therapy, but that it may be important to measure ErbB3 levels in patients with PI3K mutant cancers to determine if they would benefit.
Insights
Activating mutations in PI3K do not prevent cancer cells from responding to Heregulin (HRG) and ErbB3-targeted therapies like seribantumab. Measuring ErbB3 levels is crucial for predicting patient benefit from ErbB3-directed treatments in PI3K-mutant cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling Pathways
Background:
- Phosphoinositide 3-kinase (PI3K) mutations are common in cancer and critical for cell growth and survival.
- Heregulin (HRG)-ErbB3 signaling activates the PI3K/AKT pathway and confers resistance to anticancer drugs.
Purpose of the Study:
- To investigate if activating PI3K mutations affect HRG-ErbB3 pathway efficacy and patient response to ErbB3-directed therapies.
- To determine if PI3K-mutant cancers can still benefit from ErbB3-targeted treatments.
Main Methods:
- Utilized cell line models with activating PI3K mutations.
- Administered HRG stimulation and seribantumab (anti-ErbB3 antibody).
- Assessed cell growth, ErbB3 levels, and downstream signaling (e.g., FOXO phosphorylation).
Main Results:
- Some PI3K-mutant cell lines remained responsive to HRG, with growth inhibition by seribantumab.
- Loss of HRG response in some mutants correlated with reduced ErbB3 levels and altered FOXO signaling.
- Re-expression of ErbB3 partially restored HRG-stimulated growth, blocked by seribantumab.
Conclusions:
- Activating PI3K mutations do not necessarily abolish the potential benefit of ErbB3-directed therapies.
- ErbB3 levels are a key determinant of HRG responsiveness in PI3K-mutant cancer cells.
- Measuring ErbB3 levels in patients with PI3K-mutant cancers may guide the selection of ErbB3-targeted therapies.
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