Growth factor receptor/steroid receptor cross talk in trastuzumab-treated breast cancer
D C Collins1, S Cocchiglia1, P Tibbitts1
1Endocrine Oncology Research, Department of Surgery, Royal College of Surgeons in Ireland, Dublin, Ireland.
Abstract:
Treatment with tyrosine kinase inhibitors (TKIs) including trastuzumab has revolutionized the management of HER2-positive breast cancer. Recent evaluation of clinical trial data suggests that a subset of HER2/ER double-positive cancers may not receive significant benefit from the TKI therapy. Here we investigate the cross talk between HER2 and ER in breast cancer and monitor the effect of trastuzumab on the tyrosine kinase effector transcription factor Myc. In HER2-positive breast cancer patients treated with neoadjuvant trastuzumab, steroid receptor-negative status (ER and PR negative) of pre-treatment biopsies predicted pathological complete response (pCR) (n=31 patients, P=0.0486), whereas elevated Myc protein inversely associated with pCR (P=0.0446). Liquid chromatography mass spectrometry identified the corepressor SMRT as a novel Myc-interacting protein. Trastuzumab treatment enhanced Myc-SMRT interactions in HER2-overexpressing breast cancer cells (LCC1) and inhibited expression of the Myc target gene survivin. In HER2-low, ER-positive steroid-dominant cells (MCF7), trastuzumab therapy repressed Myc-SMRT interactions and upregulated survivin expression. Trastuzumab treatment induced ER-CBP interactions, enhanced ER transcriptional activity and upregulated expression of the ER target gene pS2. The absence of pS2 expression in pre-treatment biopsies predicted pCR to neoadjuvant trastuzumab in breast cancer patients (n=25, P=0.0089) and pS2 expression associated with residual cancer burden (P=0.0196). Furthermore, metastatic tissues from patients who had failed trastuzumab therapy were pS2 positive. In HER2-overexpressing cells, trastuzumab treatment can repress Myc transcriptional activity and clinical response is favorable. However, with co-expression of the steroid pathway, this inhibition is lost and response to treatment is often poor.
Insights
Trastuzumab is effective for HER2-positive breast cancer, but ER-positive status can reduce its benefit. This study reveals how HER2 and ER pathways interact, impacting treatment response and identifying pS2 as a predictive biomarker.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Trastuzumab, a tyrosine kinase inhibitor (TKI), has transformed HER2-positive breast cancer care.
- However, a subset of HER2/ER double-positive cancers shows limited response to TKI therapy.
- Understanding the interplay between HER2 and ER signaling is crucial for optimizing treatment strategies.
Purpose of the Study:
- To investigate the crosstalk between HER2 and ER signaling pathways in breast cancer.
- To evaluate the effect of trastuzumab on the transcription factor Myc and its downstream targets.
- To identify predictive biomarkers for trastuzumab response in HER2-positive breast cancer.
Main Methods:
- Analysis of clinical trial data from patients treated with neoadjuvant trastuzumab.
- Monitoring Myc protein levels and its interaction with the corepressor SMRT.
- Utilizing liquid chromatography mass spectrometry to identify protein interactions.
- Assessing the expression of ER target gene pS2 in pre-treatment biopsies and metastatic tissues.
Main Results:
- Steroid receptor-negative status predicted pathological complete response (pCR) in HER2-positive patients.
- Elevated Myc protein inversely correlated with pCR, while trastuzumab enhanced Myc-SMRT interaction in HER2-overexpressing cells.
- Trastuzumab induced ER-CBP interactions and upregulated ER target gene pS2 in ER-positive cells.
- Absence of pS2 expression predicted pCR, whereas pS2 positivity was associated with residual disease and treatment failure.
Conclusions:
- Trastuzumab's efficacy in HER2-overexpressing breast cancer relies on Myc pathway inhibition.
- The presence of ER signaling can counteract trastuzumab's effects by altering Myc activity and upregulating pS2.
- pS2 expression is a potential biomarker for predicting poor response to trastuzumab in HER2-positive breast cancer.
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