Related Experiment Video
Updated: Oct 3, 2025

Studying the Stoichiometry of Epidermal Growth Factor Receptor in Intact Cells using Correlative Microscopy
Published on: September 11, 2015
Landscape of Epidermal Growth Factor Receptor Heterodimers in Brain Metastases
Malcolm Lim1, Tam H Nguyen2, Colleen Niland1
1Faculty of Medicine, UQ Centre for Clinical Research, The University of Queensland, Herston, QLD 4029, Australia.
Abstract:
HER2+ breast cancer patients have an elevated risk of developing brain metastases (BM), despite adjuvant HER2-targeted therapy. The mechanisms underpinning this reduced intracranial efficacy are unclear. We optimised the in situ proximity ligation assay (PLA) for detection of the high-affinity neuregulin-1 receptor, HER2-HER3 (a key target of pertuzumab), in archival tissue samples and developed a pipeline for high throughput extraction of PLA data from fluorescent microscope image files. Applying this to a large BM sample cohort (n = 159) showed that BM from breast, ovarian, lung and kidney cancers have higher HER2-HER3 levels than other primary tumour types (melanoma, colorectal and prostate cancers). HER2 status, and tumour cell membrane expression of pHER2(Y1221/1222) and pHER3(Y1222) were positively, but not exclusively, associated with HER2-HER3 frequency. In an independent cohort (n = 78), BM had significantly higher HER2-HER3 levels than matching primary tumours (p = 0.0002). For patients who had two craniotomy procedures, HER2-HER3 dimer levels were lower in the consecutive lesion (n = 7; p = 0.006). We also investigated the effects of trastuzumab and pertuzumab on five different heterodimers in vitro: HER2-EGFR, HER2-HER4, HER2-HER3, HER3-HER4, HER3-EGFR. Treatment significantly altered the absolute frequencies of individual complexes in SKBr3 and/or MDA-MB-361 cells, but in the presence of neuregulin-1, the overall distribution was not markedly altered, with HER2-HER3 and HER2-HER4 remaining predominant. Together, these findings suggest that markers of HER2 and HER3 expression are not always indicative of dimerization, and that pertuzumab may be less effective at reducing HER2-HER3 dimerization in the context of excess neuregulin.
Insights
HER2+ breast cancer patients often develop brain metastases (BM) despite treatment. This study found higher HER2-HER3 dimer levels in BM, suggesting pertuzumab may be less effective when neuregulin is present.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- HER2+ breast cancer frequently metastasizes to the brain (BM).
- Intracranial efficacy of HER2-targeted therapies like pertuzumab is variable.
- Mechanisms of reduced HER2-targeted therapy efficacy in BM are not fully understood.
Purpose of the Study:
- To optimize and apply an in situ proximity ligation assay (PLA) for detecting HER2-HER3 dimers in archival tissue.
- To investigate HER2-HER3 dimer levels in brain metastases (BM) and primary tumors.
- To assess the in vitro effects of trastuzumab and pertuzumab on HER2-family heterodimers.
Main Methods:
- Optimized in situ proximity ligation assay (PLA) for HER2-HER3 detection.
- High-throughput PLA data extraction from fluorescent microscope images.
- Analysis of BM and primary tumor cohorts (n=159 and n=78).
- In vitro studies on HER2-family heterodimers in cancer cell lines (SKBr3, MDA-MB-361).
Main Results:
- BM from breast, ovarian, lung, and kidney cancers showed higher HER2-HER3 levels than other tumor types.
- HER2-HER3 levels were significantly higher in BM compared to matching primary tumors (p=0.0002).
- HER2-HER3 dimer levels decreased in consecutive BM lesions after craniotomy (n=7; p=0.006).
- Pertuzumab and trastuzumab altered heterodimer frequencies in vitro, but HER2-HER3 and HER2-HER4 remained predominant with neuregulin-1.
Conclusions:
- HER2 and HER3 expression levels do not always correlate with HER2-HER3 dimerization.
- Pertuzumab's efficacy in reducing HER2-HER3 dimerization may be limited by excess neuregulin.
- Findings highlight potential mechanisms for HER2-targeted therapy resistance in brain metastases.

