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4-Hydroxyphenyl retinamide is a highly selective activator of retinoid receptors
A N Fanjul1, D Delia, M A Pierotti
1Sidney Kimmel Cancer Center, La Jolla, California 92037, USA.
Abstract:
Retinoids have shown promise as anti-cancer and cancer preventative agents. All-trans-N-(4-hydroxyphenyl)retinamide (4HPR) belongs to a new group of retinoids that not only inhibit the proliferation of cancer cells but also can induce apoptosis in certain cancer cells. Because of its increased efficacy against cancer cells and its low toxicity it has been entered into a number of clinical trials. However, its mechanism of action is not known, and it had been assumed that it is not a true retinoid. Here we analyze its ability to function as an activator of nuclear retinoid receptors (RARs and RXRs). We observe that, in transactivation assays, 4HPR is a potent transactivator with RARgamma and a moderate activator with RARbeta but is not an activator with RARalpha and RXRalpha. Furthermore, RARgamma-selective transactivation by 4HPR is enhanced on some response elements and reduced on others when compared to natural retinoids. In contrast to transactivation, 4HPR in transrepression assays functions mostly with RARalpha, RARbeta, and RXRalpha. Optimal receptor activation is seen at 4HPR concentrations at which it is a potent growth inhibitor and inducer of apoptosis. We conclude that 4HPR is a highly selective activator of retinoid receptors. We propose that this selective activation of the nuclear receptors is likely to be the basis for its specific biological activities and its favorable pharmaceutical properties.
Insights
All-trans-N-(4-hydroxyphenyl)retinamide (4HPR) selectively activates specific nuclear retinoid receptors, explaining its anti-cancer properties. This mechanism underlies its efficacy and low toxicity in clinical trials.
Area of Science:
- Molecular Biology
- Cancer Research
- Pharmacology
Background:
- Retinoids are investigated for anti-cancer and cancer prevention.
- All-trans-N-(4-hydroxyphenyl)retinamide (4HPR) inhibits cancer cell proliferation and induces apoptosis.
- 4HPR exhibits high efficacy and low toxicity, leading to clinical trials, but its mechanism remains unclear.
Purpose of the Study:
- To investigate the mechanism of action of 4HPR.
- To determine if 4HPR functions as an activator of nuclear retinoid receptors (RARs and RXRs).
Main Methods:
- Transactivation assays to assess receptor activation by 4HPR.
- Transrepression assays to evaluate receptor modulation by 4HPR.
- Comparison of 4HPR activity with natural retinoids on various response elements.
Main Results:
- 4HPR is a potent transactivator for RARgamma and a moderate activator for RARbeta, but not for RARalpha or RXRalpha.
- 4HPR exhibits selective transactivation, with effects varying across different response elements compared to natural retinoids.
- 4HPR functions primarily with RARalpha, RARbeta, and RXRalpha in transrepression assays.
- Optimal receptor activation by 4HPR occurs at concentrations that inhibit cancer cell growth and induce apoptosis.
Conclusions:
- 4HPR is a highly selective activator of retinoid receptors.
- The selective activation of nuclear receptors by 4HPR likely explains its specific biological activities and favorable pharmaceutical properties.