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Androgen receptor involvement in the progression of prostate cancer
1Department of Urology, Graduate School of Medicine, Chiba University, 1-8-1 Inohana, Chuo-ku, Chiba-shi, Chiba 260-8670, Japan. hirosuzu@ho-chiba-u.ac.jp
Abstract:
Since the growth of prostate cancer is androgen-sensitive, metastatic disease has been treated by hormonal therapy. Almost all prostate cancer patients initially respond to hormonal therapy, but the majority gradually develop resistance. The mechanism of the change in tumors from being androgen-responsive to androgen-unresponsive is generally explained by clonal selection, adaptation, an alternative pathway of signal transduction and androgen receptor (AR) involvement. Since androgen action is mediated by ARs, abnormalities in ARs are believed to play an important role in the progression of prostate cancer. Hyperactivated AR gene mutations have been detected in 20-30% of hormone-refractory tumors and functional analyses have demonstrated a wide responsiveness to estrogens, progesterone and anti-androgens as well as to androgens. The AR is highly amplified in 30% of patients with hormone-refractory prostate cancer that has been treated by castration without anti-androgens. Immunohistochemical studies of ARs in hormone-refractory prostate cancer specimens have shown that AR protein is down-regulated. DNA hypermethylation of the AR promoter region leading to AR down-regulation has been identified in 30% of hormone-refractory prostate cancers. The AR N-terminal domain in the LNCaP cell line model is activated by interleukin-6 via mitogen-activated protein kinase and single transducers and activators of transcription 3. Epidemiological observations have shown that short CAG repeats are more frequently associated with higher transactivational function in the African-American population, which may explain racial differences in the incidence of prostate cancer. Among Japanese, a short CAG repeat appears to predict a response to hormonal therapy, indicating a positive prognostic value and good prognosis at the metastatic stage of prostate cancer. Several co-factors between ARs and the transcriptional complex have been cloned and reports indicate that steroid receptor co-activator 1 is correlated with the hormone-refractory progression of prostate cancer. Thus, ARs plays an important role in the progression of prostate cancer. Based on the findings described above, genetic diagnosis and/or molecular-targeted therapy via AR pathways can be developed for hormone-refractory states.
Insights
Prostate cancer resistance to hormonal therapy involves androgen receptor (AR) abnormalities. Understanding AR pathways is key for developing targeted therapies for hormone-refractory prostate cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Prostate cancer growth is androgen-sensitive, making hormonal therapy a primary treatment.
- Most patients initially respond, but resistance to androgen deprivation therapy (ADT) is common.
- Mechanisms of resistance include clonal selection, adaptive pathways, and androgen receptor (AR) alterations.
Purpose of the Study:
- To explore the role of androgen receptor (AR) abnormalities in the progression of hormone-refractory prostate cancer.
- To identify potential molecular targets for overcoming treatment resistance.
Main Methods:
- Analysis of AR gene mutations and amplification in hormone-refractory tumors.
- Immunohistochemical studies of AR protein expression.
- Investigation of AR promoter methylation and activation pathways (e.g., IL-6/MAPK/STAT3).
- Examination of AR CAG repeat polymorphisms and co-factor involvement.
Main Results:
- AR gene mutations (20-30%) and amplification (30%) are found in hormone-refractory prostate cancer.
- AR protein is often down-regulated, linked to promoter hypermethylation in 30% of cases.
- AR can be activated by non-androgen stimuli (e.g., IL-6) and influenced by genetic variations (CAG repeats).
- Steroid receptor co-activator 1 correlates with disease progression.
Conclusions:
- Androgen receptor (AR) plays a critical role in prostate cancer progression and treatment resistance.
- AR pathway alterations offer potential targets for novel diagnostic and therapeutic strategies.
- Understanding AR's complex role can guide the development of molecular-targeted therapies for refractory disease.