A Non-Canonical p75HER2 Signaling Pathway Underlying Trastuzumab Action and Resistance in Breast Cancer
1Department of Medical Genetics, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, AB T6G 2H7, Canada.
Abstract:
Overexpression of HER2 occurs in 25% of breast cancer. Targeting HER2 has proven to be an effective therapeutic strategy for HER2-positive breast cancer. While trastuzumab is the most commonly used HER2 targeting agent, which has significantly improved outcomes, the overall response rate is low. To develop novel therapies to boost trastuzumab efficacy, it is critical to identify the mechanisms underlying trastuzumab action and resistance. We recently showed that the inhibition of breast cancer cell growth by trastuzumab is not through the inhibition of HER2 canonical signaling. Here we report the identification of a novel non-canonical HER2 signaling pathway and its interference by trastuzumab. We showed that HER2 signaled through a non-canonical pathway, regulated intramembrane proteolysis (RIP). In this pathway, HER2 is first cleaved by metalloprotease ADAM10 to produce an extracellular domain (ECD) that is released and the p95HER2 that contains the transmembrane domain (TM) and intracellular domain (ICD). p95HER2, if further cleaved by an intramembrane protease, γ-secretase, produced a soluble ICD p75HER2 with nuclear localization signal (NLS). p75HER2 is phosphorylated and translocated to the nucleus. Nuclear p75HER2 promotes cell proliferation. Trastuzumab targets this non-canonical HER2 pathway via inhibition of the proteolytic cleavage of HER2 by both ADAM10 and γ-secretase. However, p75HER2 pathway also confers resistance to trastuzumab once aberrantly activated. Combination of trastuzumab with ADAM10 and γ-secretase inhibitors completely blocks p75HER2 production in both BT474 and SKBR3 cells. We concluded that HER2 signals through the RIP signaling pathway that promotes cell proliferation and is targeted by trastuzumab. The aberrant HER2 RIP signaling confers resistance to trastuzumab that could be overcome by the application of inhibitors to ADAM10 and γ-secretase.
Insights
Trastuzumab resistance in HER2-positive breast cancer involves a novel HER2 signaling pathway. Inhibiting this pathway with ADAM10 and γ-secretase inhibitors may overcome resistance and improve treatment efficacy.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- HER2 overexpression is common in breast cancer, and HER2-targeted therapy like trastuzumab has improved outcomes.
- However, trastuzumab's efficacy is limited by low response rates and resistance.
- Understanding trastuzumab's mechanism of action and resistance is crucial for developing new therapies.
Purpose of the Study:
- To identify a novel non-canonical HER2 signaling pathway.
- To investigate how trastuzumab interferes with this pathway.
- To explore therapeutic strategies to overcome trastuzumab resistance.
Main Methods:
- Investigated HER2 signaling through regulated intramembrane proteolysis (RIP).
- Examined the role of ADAM10 and γ-secretase in HER2 cleavage.
- Assessed the effect of trastuzumab, ADAM10 inhibitors, and γ-secretase inhibitors on HER2 signaling and cell proliferation.
Main Results:
- Identified a novel HER2 RIP pathway involving cleavage by ADAM10 and γ-secretase to produce nuclear p75HER2, promoting cell proliferation.
- Trastuzumab inhibits HER2 cleavage by ADAM10 and γ-secretase.
- Aberrant activation of the p75HER2 pathway confers trastuzumab resistance.
Conclusions:
- HER2 signals through a non-canonical RIP pathway that promotes cell proliferation and is targeted by trastuzumab.
- The p75HER2 pathway contributes to trastuzumab resistance.
- Combining trastuzumab with ADAM10 and γ-secretase inhibitors can overcome resistance by blocking p75HER2 production.
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