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Published on: August 23, 2019
Androgen receptor activation decreases proliferation in thyroid cancer cells
Melanie E Jones1,2, Timmy J O'Connell1, Hong Zhao3
1Department of Microbiology and Immunology, New York Medical College, Valhalla, New York, USA.
Abstract:
The American Cancer Society predicted more than 52 000 new cases of thyroid cancer in 2020, making it the most prevalent endocrine malignancy. Due to the approximately threefold higher incidence of thyroid cancer in women, we hypothesize that androgens and/or androgen receptors play a protective role and that thyroid cancer in men represents an escape from androgen-mediated cell regulation. The analysis of androgen receptor (AR) expression in patient tissue samples identified a 2.7-fold reduction in AR expression (p < 0.005) in papillary thyroid cancer compared with matched, normal tissue. An in vitro cell model was developed by stably transfecting AR into 8505C undifferentiated thyroid cancer cells (resulting in clone 84E7). The addition of DHT to the clone 84E7 resulted in AR translocation into the nucleus and a 70% reduction in proliferation, with a shift in the cell cycle toward G1 arrest. RNASeq analysis revealed significant changes in mRNA levels associated with proliferation, cell cycle, and cell cycle regulation. Furthermore, androgen significantly decreased the levels of the G1-associated cell cycle progression proteins cdc25a CDK6 CDK4 and CDK2 as well as increased the levels of the cell cycle inhibitors, p27 and p21. The data strongly suggest that DHT induces a G1 arrest in androgen-responsive thyroid cancer cells. Together, these data support our hypothesis that AR/androgen may play a protective, antiproliferative role and are consistent with younger men having a lower incidence of thyroid cancer than women.
Insights
Androgens and androgen receptors may protect against thyroid cancer by slowing cell growth. This antiproliferative effect, observed in cell models, supports their protective role, especially in men.
Area of Science:
- Endocrinology
- Oncology
- Molecular Biology
Background:
- Thyroid cancer is the most common endocrine malignancy, with higher incidence in women.
- Androgen receptor (AR) expression is reduced in papillary thyroid cancer tissue.
- Hypothesis: Androgens/AR play a protective role, and thyroid cancer in men is an escape from androgen regulation.
Purpose of the Study:
- To investigate the antiproliferative role of androgen receptor (AR) and androgens in thyroid cancer.
- To explore the potential protective mechanisms of AR/androgen signaling in thyroid cancer development.
Main Methods:
- Analyzed AR expression in patient thyroid cancer tissues versus normal tissues.
- Developed an in vitro model by transfecting AR into undifferentiated thyroid cancer cells (8505C).
- Treated AR-transfected cells with dihydrotestosterone (DHT) and analyzed proliferation, cell cycle, and gene expression (RNASeq).
Main Results:
- A 2.7-fold reduction in AR expression was observed in papillary thyroid cancer.
- DHT treatment of AR-transfected cells led to nuclear AR translocation and a 70% proliferation reduction, inducing G1 cell cycle arrest.
- DHT decreased G1-associated proteins (cdc25a, CDK6, CDK4, CDK2) and increased cell cycle inhibitors (p27, p21).
Conclusions:
- Androgen signaling, specifically DHT, induces G1 arrest in androgen-responsive thyroid cancer cells.
- AR/androgen signaling appears to have an antiproliferative role in thyroid cancer.
- Findings support the hypothesis that AR/androgen signaling contributes to lower thyroid cancer incidence in men.
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