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Time-Resolved Profiling Reveals ATF3 as a Novel Mediator of Endocrine Resistance in Breast Cancer
Simone Borgoni1,2, Emre Sofyalı1,2, Maryam Soleimani3,4
1Division of Molecular Genome Analysis, German Cancer Research Center (DKFZ), Im Neuenheimer Feld 580, 69120 Heidelberg, Germany.
Abstract:
Breast cancer is one of the leading causes of death for women worldwide. Patients whose tumors express Estrogen Receptor α account for around 70% of cases and are mostly treated with targeted endocrine therapy. However, depending on the degree of severity of the disease at diagnosis, 10 to 40% of these tumors eventually relapse due to resistance development. Even though recent novel approaches as the combination with CDK4/6 inhibitors increased the overall survival of relapsing patients, this remains relatively short and there is a urgent need to find alternative targetable pathways. In this study we profiled the early phases of the resistance development process to uncover drivers of this phenomenon. Time-resolved analysis revealed that ATF3, a member of the ATF/CREB family of transcription factors, acts as a novel regulator of the response to therapy via rewiring of central signaling processes towards the adaptation to endocrine treatment. ATF3 was found to be essential in controlling crucial processes such as proliferation, cell cycle, and apoptosis during the early response to treatment through the regulation of MAPK/AKT signaling pathways. Its essential role was confirmed in vivo in a mouse model, and elevated expression of ATF3 was verified in patient datasets, adding clinical relevance to our findings. This study proposes ATF3 as a novel mediator of endocrine resistance development in breast cancer and elucidates its role in the regulation of downstream pathways activities.
Insights
Estrogen Receptor α-positive breast cancer can develop resistance to endocrine therapy. This study identifies ATF3 as a key regulator in early resistance development, offering a potential new therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Estrogen Receptor α (ERα)-positive breast cancer accounts for ~70% of cases and is primarily treated with endocrine therapy.
- Therapy resistance and tumor relapse occur in 10-40% of ERα-positive breast cancer patients, necessitating new therapeutic strategies.
- While CDK4/6 inhibitors have improved survival, a significant unmet need exists for alternative treatment targets.
Purpose of the Study:
- To investigate the molecular mechanisms driving early-phase endocrine therapy resistance in breast cancer.
- To identify novel targetable pathways involved in the adaptation to endocrine treatment.
Main Methods:
- Time-resolved profiling of early resistance development phases.
- Analysis of transcription factor ATF3's role in regulating signaling pathways.
- In vivo validation using a mouse model.
- Correlation with human patient datasets.
Main Results:
- ATF3, a transcription factor, was identified as a novel regulator in endocrine therapy response.
- ATF3 is crucial for controlling proliferation, cell cycle, and apoptosis by modulating MAPK/AKT signaling.
- Elevated ATF3 expression was observed in patient data, confirming clinical relevance.
Conclusions:
- ATF3 is proposed as a novel mediator in the development of endocrine resistance in breast cancer.
- Understanding ATF3's role in regulating downstream pathways provides insights into resistance mechanisms.
- Targeting ATF3 may offer a new therapeutic avenue for overcoming endocrine resistance.
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