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An Emerging Role for Sigma Receptor 1 in Personalized Treatment of Breast Cancer
Taylor S Robinson1, Mahasin A Osman1
1Department of Medicine, Division of Oncology, College of Medicine and Life Sciences, University of Toledo, Toledo, OH 43614, USA.
Abstract:
Despite the major progress in treating breast cancer, recurrence remains a problem and types such as triple-negative breast cancer still lack targeted medicine. The orphan Sigma receptor1 (SigmaR1) has emerged as a target in breast cancer, but its mechanism of action is unclear and hinders clinical utility. SigmaR1 is widely expressed in organ tissues and localized to various sub-cellular compartments, particularly the endoplasmic reticulum (ER), the mitochondrial-associated membranes (MAMs) and the nuclear envelope. As such, it involves diverse cellular functions, including protein quality control/ER stress, calcium signaling, cholesterol homeostasis, mitochondrial integrity and energy metabolism. Consequently, SigmaR1 has been implicated in a number of cancers and degenerative diseases and thus has been intensively pursued as a therapeutic target. Because SigmaR1 binds a number of structurally unrelated ligands, it presents an excellent context-dependent therapeutic target. Here, we review its role in breast cancer and the current therapies that have been considered based on its known functions. As SigmaR1 is not classified as an oncoprotein, we propose a model in which it serves as an oligomerization adaptor in key cellular pathways, which may help illuminate its association with variable diseases and pave the way for clinical utility in personalized medicine.
Insights
Sigma receptor 1 (SigmaR1) is a potential therapeutic target for breast cancer, especially triple-negative types. Understanding its role as an oligomerization adaptor may lead to personalized medicine approaches.
Area of Science:
- Oncology
- Molecular Biology
- Cellular Biology
Background:
- Breast cancer recurrence and triple-negative breast cancer lack targeted therapies.
- Sigma receptor 1 (SigmaR1) is implicated in various cancers and degenerative diseases.
- SigmaR1's precise mechanism in cancer, particularly breast cancer, remains unclear, hindering clinical application.
Purpose of the Study:
- To review the role of Sigma receptor 1 (SigmaR1) in breast cancer.
- To discuss current therapeutic strategies targeting SigmaR1.
- To propose a model for SigmaR1's function in disease pathogenesis.
Main Methods:
- Literature review of SigmaR1's function in cellular pathways.
- Analysis of SigmaR1's involvement in cancer and degenerative diseases.
- Exploration of SigmaR1's potential as a therapeutic target.
Main Results:
- SigmaR1 is localized in key cellular compartments like the ER, MAMs, and nuclear envelope.
- SigmaR1 influences critical cellular functions including ER stress, calcium signaling, and metabolism.
- SigmaR1's ability to bind diverse ligands makes it a context-dependent therapeutic target.
Conclusions:
- SigmaR1 is not an oncoprotein but may act as an oligomerization adaptor.
- Understanding SigmaR1's adaptor role can elucidate its association with various diseases.
- This understanding may facilitate the clinical utility of SigmaR1-targeted therapies in personalized medicine.
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