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TWIST1 Upregulation Is a Potential Target for Reversing Resistance to the CDK4/6 Inhibitor in Metastatic Luminal
Nicoletta Cordani1, Luca Mologni1, Rocco Piazza1
1School of Medicine and Surgery, Milano-Bicocca University, 20900 Monza, Italy.
Abstract:
Cyclin-dependent kinase (CDK) 4/6 inhibitors have significantly improved progression-free survival in hormone-receptor-positive (HR+), human-epidermal-growth-factor-receptor-type-2-negative (HER2-) metastatic luminal breast cancer (mLBC). Several studies have shown that in patients with endocrine-sensitive or endocrine-resistant LBC, the addition of CDK4/6 inhibitors to endocrine therapy significantly prolongs progression-free survival. However, the percentage of patients who are unresponsive or refractory to these therapies is as high as 40%, and no reliable and reproducible biomarkers have been validated to select a priori responders or refractory patients. The selection of mutant clones in the target oncoprotein is the main cause of resistance. Other mechanisms such as oncogene amplification/overexpression or mutations in other pathways have been described in several models. In this study, we focused on palbociclib, a selective CDK4/6 inhibitor. We generated a human MCF-7 luminal breast cancer cell line that was able to survive and proliferate at different concentrations of palbociclib and also showed cross-resistance to abemaciclib. The resistant cell line was characterized via RNA sequencing and was found to strongly activate the epithelial-to-mesenchymal transition. Among the top deregulated genes, we found a dramatic downregulation of the CDK4 inhibitor CDKN2B and an upregulation of the TWIST1 transcription factor. TWIST1 was further validated as a target for the reversal of palbociclib resistance. This study provides new relevant information about the mechanisms of resistance to CDK4/6 inhibitors and suggests potential new markers for patients' follow-up care during treatment.
Insights
Cyclin-dependent kinase (CDK) 4/6 inhibitors improve outcomes in metastatic luminal breast cancer. However, resistance develops in up to 40% of patients. This study identifies epithelial-to-mesenchymal transition activation and TWIST1 upregulation as key mechanisms of resistance to palbociclib.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Cyclin-dependent kinase (CDK) 4/6 inhibitors are effective in hormone-receptor-positive (HR+), human-epidermal-growth-factor-receptor-type-2-negative (HER2-) metastatic luminal breast cancer (mLBC).
- Despite significant improvements in progression-free survival, a substantial proportion of patients (up to 40%) develop resistance to these therapies.
- Current biomarkers for predicting response or resistance to CDK4/6 inhibitors are lacking.
Purpose of the Study:
- To investigate the mechanisms of resistance to palbociclib, a selective CDK4/6 inhibitor, in luminal breast cancer.
- To identify potential biomarkers for predicting or overcoming resistance to CDK4/6 inhibitors.
Main Methods:
- Generation of a human MCF-7 luminal breast cancer cell line resistant to palbociclib.
- Characterization of the resistant cell line using RNA sequencing.
- Validation of TWIST1 as a therapeutic target for reversing palbociclib resistance.
Main Results:
- The palbociclib-resistant cell line exhibited cross-resistance to abemaciclib.
- Resistant cells showed strong activation of the epithelial-to-mesenchymal transition (EMT).
- Key molecular changes included downregulation of CDKN2B and upregulation of TWIST1.
Conclusions:
- Activation of EMT and upregulation of TWIST1 are significant mechanisms contributing to palbociclib resistance in luminal breast cancer.
- TWIST1 may serve as a therapeutic target to overcome resistance.
- These findings offer insights into resistance mechanisms and suggest potential markers for patient monitoring during treatment.
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