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A central role for HER3 in HER2-amplified breast cancer: implications for targeted therapy
Si Tuen Lee-Hoeflich1, Lisa Crocker, Evelyn Yao
1Department of Pathology, Genentech, Inc., South San Francisco, CA 94080, USA.
Abstract:
Epidermal growth factor receptor (EGFR) and HER3 each form heterodimers with HER2 and have independently been implicated as key coreceptors that drive HER2-amplified breast cancer. Some studies suggest a dominant role for EGFR, a notion of renewed interest given the development of dual HER2/EGFR small-molecule inhibitors. Other studies point to HER3 as the primary coreceptor. To clarify the relative contributions of EGFR and HER3 to HER2 signaling, we studied receptor knockdown via small interfering RNA technology across a panel of six HER2-overexpressing cell lines. Interestingly, HER3 was as critical as HER2 for maintaining cell proliferation in most cell lines, whereas EGFR was dispensable. Induction of HER3 knockdown in the HER2-overexpressing BT474M1 cell line was found to inhibit growth in three-dimensional culture and induce rapid tumor regression of in vivo xenografts. Furthermore, preferential phosphorylation of HER3, but not EGFR, was observed in HER2-amplified breast cancer tissues. Given these data suggesting HER3 as an important therapeutic target, we examined the activity of pertuzumab, a HER2 antibody that inhibits HER3 signaling by blocking ligand-induced HER2/HER3 heterodimerization. Pertuzumab inhibited ligand-dependent morphogenesis in three-dimensional culture and induced tumor regression in the heregulin-dependent MDA-MB-175 xenograft model. Importantly, these activities of pertuzumab were distinct from those of trastuzumab, a monoclonal antibody currently used for treatment of HER2-amplified breast cancer patients. Our data suggest that inhibition of HER3 may be more clinically relevant than inhibition of EGFR in HER2-amplified breast cancer and also suggest that adding pertuzumab to trastuzumab may augment therapeutic benefit by blocking HER2/HER3 signaling.
Insights
HER3 is critical for HER2-amplified breast cancer growth, unlike EGFR. Targeting HER3 with pertuzumab shows promise, potentially enhancing trastuzumab therapy by blocking HER2/HER3 signaling.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling
Background:
- HER2-amplified breast cancer relies on coreceptors like EGFR and HER3 for growth.
- The relative importance of EGFR versus HER3 in HER2 signaling remains debated.
- Dual HER2/EGFR inhibitors are emerging, prompting a re-evaluation of coreceptor roles.
Purpose of the Study:
- To elucidate the distinct roles of EGFR and HER3 as coreceptors in HER2-amplified breast cancer.
- To assess the therapeutic potential of targeting HER3 in HER2-amplified breast cancer models.
- To compare the efficacy of pertuzumab and trastuzumab in blocking HER2 signaling pathways.
Main Methods:
- Utilized small interfering RNA (siRNA) to knockdown EGFR and HER3 in HER2-overexpressing cell lines.
- Assessed cell proliferation, 3D culture growth, and in vivo xenograft tumor regression.
- Analyzed receptor phosphorylation in patient tumor tissues and evaluated antibody-dependent effects.
Main Results:
- HER3 knockdown significantly inhibited proliferation and tumor growth, while EGFR knockdown had minimal impact.
- HER3 phosphorylation was observed in HER2-amplified breast cancer tissues, not EGFR.
- Pertuzumab demonstrated efficacy in blocking HER3 signaling and inducing tumor regression, distinct from trastuzumab's action.
Conclusions:
- HER3 plays a more critical role than EGFR in driving HER2-amplified breast cancer.
- Targeting HER3, particularly via HER2/HER3 heterodimer inhibition with pertuzumab, is a promising therapeutic strategy.
- Combination therapy with pertuzumab and trastuzumab may offer augmented benefits by simultaneously blocking HER2/HER3 signaling.
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