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Published on: August 13, 2019
Non-canonical Estrogen Signaling in Endocrine Resistance
Prathibha Ranganathan1, Namratha Nadig1, Sughosha Nambiar1
1Centre for Human Genetics, Bengaluru, India.
Abstract:
Breast cancer is one of the leading causes of cancer related deaths in women worldwide. The disease is extremely heterogenous. A large percentage of the breast cancers are dependent on estrogen signaling and hence respond to endocrine therapies which essentially block the estrogen signaling. However, many of these tumors emerge as endocrine resistant tumors. Many mechanisms have been proposed to explain the emergence of endocrine resistance, which include mutations in the estrogen receptors, cross-talk with other signaling pathways, cancer stem cells etc. This review is focused on the role of non-canonical estrogen receptor signaling in endocrine resistance. Most of the therapeutics which are used currently are targeting the major receptor of estrogen namely ER-α. Last two decades has witnessed the discovery of alternate forms of ER-α, as well as other receptors for estrogen such as ERRgamma, GPER-1 as well as ER-β, which are activated not only by estrogen, but also by the therapeutic agents such as tamoxifen that are routinely used in treatment of breast cancer. However, when the alternate receptors are activated, they result in activation of membrane signaling which subsequently activates pathways such as MAPK and GPCR leading to cell-proliferation. This renders the anticipated anti-estrogenic effects of tamoxifen less effective or ineffective. Future research in this area has to focus on the alternate mechanisms and develop a combinatorial strategy, which can complement the existing therapeutics to get better outcome of endocrine therapies.
Insights
Non-canonical estrogen receptor signaling, involving alternate estrogen receptors, contributes to endocrine resistance in breast cancer. Targeting these pathways may improve endocrine therapy effectiveness.
Area of Science:
- Oncology
- Molecular Biology
- Endocrinology
Background:
- Breast cancer is a leading cause of cancer deaths in women.
- Many breast cancers rely on estrogen signaling and respond to endocrine therapies.
- Endocrine resistance is a significant challenge in breast cancer treatment.
Purpose of the Study:
- To review the role of non-canonical estrogen receptor signaling in endocrine resistance.
- To highlight alternate estrogen receptors and their activation by therapeutics.
- To discuss implications for current breast cancer treatment strategies.
Main Methods:
- Literature review focused on non-canonical estrogen receptor signaling.
- Analysis of estrogen receptor variants (ER-α, ER-β, ERRgamma, GPER-1).
- Examination of signaling pathways (MAPK, GPCR) activated by alternate receptors.
Main Results:
- Alternate estrogen receptors can be activated by estrogen and endocrine therapies like tamoxifen.
- Activation of these receptors leads to membrane signaling and cell proliferation.
- This activation can counteract the intended anti-estrogenic effects of therapies.
Conclusions:
- Non-canonical estrogen receptor signaling is a key mechanism in endocrine resistance.
- Current therapies targeting ER-α may be less effective due to alternate receptor activation.
- Future research should explore combinatorial strategies to overcome endocrine resistance.
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