Dawson M I, Hobbs P D, Peterson V J, Leid M, Lange C W, Feng K C, Gu J, Li H, Kolluri S K, Zhang Y, Fontana J A
Department of Medicinal Chemistry, Molecular Medicine Research Institute, Mountain View, California 94043, USA.
Cancer Res. 2001 Jun 15;61(12):4723-30.
The retinoid 6-[3-(1-adamantyl)-4-hydroxyphenyl]-2-naphthalenecarboxylic acid (AHPN) is reported to have anticancer activity in vivo. Induction of cell cycle arrest and apoptosis in cancer cell lines refractory to standard retinoids suggests a retinoid-independent mechanism of action for AHPN. Conformational studies suggested that binding of AHPN does not induce an unusual conformation in retinoic acid receptor (RAR) gamma. The 3-chloro AHPN analogue MM11453 inhibited the growth of both retinoid-resistant (HL-60R leukemia, MDA-MB-231 breast, and H292 lung) and retinoid-sensitive (MCF-7 breast, LNCaP prostate, and H460 lung) cancer cell lines by inducing apoptosis at similar concentrations. Before apoptosis, MM11453 induced transcription factor TR3 expression and loss of mitochondrial membrane potential characteristic of apoptosis. MM11453 lacked the ability to significantly activate RARs and retinoid X receptor alpha to initiate (TREpal)(2)-tk-CAT reporter transcription. These results, differential proteolysis-sensitivity assays, and glutathione S-transferase-pulldown experiments demonstrate that, unlike AHPN or the natural or standard synthetic retinoids, MM11453 does not behave as a RAR or retinoid X receptor alpha transcriptional agonist. These studies strongly suggest that AHPN exerts its cell cycle arrest and apoptotic activity by a signaling pathway independent of retinoid receptor activation.
据报道,类视黄醇6-[3-(1-金刚烷基)-4-羟基苯基]-2-萘甲酸(AHPN)在体内具有抗癌活性。在对标准类视黄醇难治的癌细胞系中诱导细胞周期停滞和凋亡表明AHPN具有不依赖类视黄醇的作用机制。构象研究表明,AHPN的结合不会在维甲酸受体(RAR)γ中诱导异常构象。3-氯AHPN类似物MM11453通过在相似浓度下诱导凋亡,抑制了抗类视黄醇(HL-60R白血病、MDA-MB-231乳腺癌和H292肺癌)和对类视黄醇敏感(MCF-7乳腺癌、LNCaP前列腺癌和H460肺癌)的癌细胞系的生长。在凋亡之前,MM11453诱导转录因子TR3表达以及凋亡特有的线粒体膜电位丧失。MM11453缺乏显著激活RARs和类视黄醇X受体α以启动(TREpal)(2)-tk-CAT报告基因转录的能力。这些结果、差异蛋白水解敏感性分析以及谷胱甘肽S-转移酶下拉实验表明,与AHPN或天然或标准合成类视黄醇不同,MM11453并非作为RAR或类视黄醇X受体α转录激动剂发挥作用。这些研究强烈表明,AHPN通过独立于类视黄醇受体激活的信号通路发挥其细胞周期停滞和凋亡活性。