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p130Cas scaffold protein regulates ErbB2 stability by altering breast cancer cell sensitivity to autophagy
Brigitte Bisaro1, Marianna Sciortino1, Shana Colombo1
1Department of Biotechnology and Health Sciences, University of Torino, Torino, Italy.
Abstract:
Overexpression of the ErbB2/HER2 receptor tyrosine kinase occurs in up to 20% of human breast cancers and correlates with aggressive disease. Several efficacious targeted therapies, including antibodies and kinase inhibitors, have been developed but the occurring of resistance to these agents is often observed. New therapeutic agents targeting the endocytic recycling and intracellular trafficking of membrane in tumor cells overexpressing ErbB2 are actually in clinical development. Nevertheless the mechanisms underlying ErbB2 downregulation are still obscure. We have previously demonstrated that the overexpression of the p130Cas adaptor protein in ErbB2 positive breast cancer, promotes tumor aggressiveness and progression. Here we demonstrate that lowering p130Cas expression in breast cancer cells is sufficient to induce ErbB2 degradation by autophagy. Conversely, p130Cas overexpression protects ErbB2 from degradation by autophagy. Furthermore, this autophagy-dependent preferential degradation of ErbB2 in absence of p130Cas is due to an increased ErbB2 ubiquitination. Indeed, the overexpression of p130Cas impairs ErbB2 ubiquitination by inhibiting the binding of Cbl and CHIP E3 ligases to ErbB2. Finally, our results indicate that p130Cas-dependent ErbB2 protection from degradation by autophagy may alter the sensitivity to the humanized monoclonal antibody trastuzumab. Consistently, in human ErbB2 positive breast cancers that develop resistance to trastuzumab, p130Cas expression is significantly increased suggesting that elevated levels of p130Cas can be involved in trastuzumab resistance.
Insights
Reducing p130Cas protein levels triggers the degradation of ErbB2 (also known as HER2) in breast cancer cells via autophagy. Conversely, high p130Cas protects ErbB2, potentially impacting trastuzumab treatment effectiveness.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- ErbB2/HER2 receptor tyrosine kinase overexpression drives aggressive breast cancer.
- Targeted therapies for ErbB2-positive breast cancer exist but resistance is common.
- Mechanisms of ErbB2 downregulation remain unclear.
Purpose of the Study:
- To investigate the role of p130Cas in ErbB2 regulation and its impact on breast cancer.
- To explore the link between p130Cas, ErbB2 degradation, and autophagy.
- To determine if p130Cas influences sensitivity to trastuzumab.
Main Methods:
- Investigated ErbB2 degradation in breast cancer cells with varying p130Cas expression.
- Utilized autophagy and ubiquitination assays.
- Assessed the binding of E3 ligases (Cbl, CHIP) to ErbB2.
- Correlated p130Cas levels with trastuzumab resistance in patient samples.
Main Results:
- Lowering p130Cas induced ErbB2 degradation through autophagy.
- p130Cas overexpression protected ErbB2 from autophagy-dependent degradation.
- p130Cas inhibited ErbB2 ubiquitination by preventing Cbl and CHIP binding.
- Elevated p130Cas correlated with trastuzumab resistance in human breast cancers.
Conclusions:
- p130Cas regulates ErbB2 degradation via autophagy by modulating ubiquitination.
- p130Cas overexpression may confer resistance to trastuzumab in ErbB2-positive breast cancer.
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