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Vitamin A and apoptosis in prostate cancer
1The Burnham Institute, Cancer Center, 10901 North Torrey Pines Road, La Jolla, California 92037, USA. xzhang@burnham-inst.org
Abstract:
Apoptosis represents an effective way to eliminate cancer cells. Unfortunately, advanced prostate tumors eventually progress to androgen-independent tumors, which are resistant to current therapeutic approaches that act by triggering apoptosis. Vitamin A and its natural and synthetic analogs (retinoids) induce apoptosis in prostate cancer cells in vitro and in animal models, mainly through induction of retinoic acid receptor-beta (RARbeta). Expression levels of RARbeta, however, are significantly reduced in hormone-independent prostate cancer cells. Recently, a new class of synthetic retinoids related to 6-[3-(1-adamantyl)-4-hydroxyphenyl]-2-naphthalene carboxylic acid (AHPN) (also called CD437) that effectively induces apoptosis of both hormone-dependent and -independent prostate cancer cells in a retinoid receptor-independent manner was identified and has drawn a lot of attention in the field. The apoptotic effect of AHPN requires expression of orphan receptor TR3 (also called nur77 or NGFI-B). Paradoxically, TR3 expression is also induced by androgen and other mitogenic agents in prostate cancer cells to confer their proliferation. The recent finding that TR3 migrates from the nucleus to mitochondria to trigger apoptosis in response to AHPN suggests that the opposing biological activities of TR3 are regulated by its subcellular localization. Thus, agents that induce translocalization of TR3 from the nucleus to mitochondria will have improved efficacy against prostate cancer. TR3, therefore, represents an unexplored molecule that may be an ideal target for developing new agents for prostate cancer therapy.
Insights
New retinoids induce apoptosis in prostate cancer cells by targeting the TR3 receptor. This discovery offers a promising therapeutic strategy for advanced, treatment-resistant prostate cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cellular Biology
Background:
- Advanced prostate tumors become androgen-independent and resistant to apoptosis-inducing therapies.
- Retinoids can induce apoptosis via retinoic acid receptor-beta (RARbeta), but RARbeta is downregulated in resistant cells.
Purpose of the Study:
- To investigate novel synthetic retinoids for treating hormone-independent prostate cancer.
- To elucidate the mechanism of action for the synthetic retinoid AHPN (CD437).
Main Methods:
- Investigated the apoptotic effects of AHPN on prostate cancer cells.
- Examined the role of the orphan receptor TR3 (nur77) in AHPN-induced apoptosis.
- Studied the subcellular localization of TR3 in response to AHPN.
Main Results:
- AHPN induces apoptosis in both hormone-dependent and -independent prostate cancer cells.
- AHPN's apoptotic effect is independent of RARbeta but requires the orphan receptor TR3.
- TR3 translocates from the nucleus to mitochondria upon AHPN treatment, triggering apoptosis.
Conclusions:
- TR3 mediates apoptosis induced by AHPN in prostate cancer cells.
- TR3's subcellular localization dictates its opposing roles in proliferation and apoptosis.
- Targeting TR3 translocation to mitochondria presents a novel therapeutic strategy for prostate cancer.