Robzyk Kenneth, Oen Handy, Buchanan Grant, Butler Lisa M, Tilley Wayne D, Mandal Atin K, Rosen Neal, Caplan Avrom J
Department of Medicine and Program in Molecular Pharmacology and Chemistry, Memorial Sloan-Kettering Cancer Center, New York, NY 10021, USA.
Mol Cell Endocrinol. 2007 Mar 30;268(1-2):67-74. doi: 10.1016/j.mce.2007.01.016. Epub 2007 Feb 6.
The mechanisms underlying androgen receptor (AR)-mediated progression of prostate cancer following androgen ablation have yet to be fully determined. On this basis we screened naturally occurring mutants of human AR for hormone-independent activity using a yeast model system. An initial screen of 43 different mutants revealed that ARs having a Leu701His mutation (AR(L701H)) exhibited hormone-independent activation of a lacZ reporter gene. The AR(L701H) mutant bound dihydrotestosterone to a similar extent as did wild type AR, although its ability to be induced by hormone for transactivation was reduced substantially. Subsequent studies focused on the dependence of AR(L701H) on molecular chaperones for folding to the active state. We found that AR(L701H) was highly dependent on Hsp90 for its hormone-independent activation, suggesting that this chaperone functions in AR(L701H) folding. However, the mutant did not respond specifically to increased levels of FKBP52, suggesting that this chaperone functions at the hormone-dependent activation stage in the folding process. Further studies of AR(L701H) in PC3 cells suggested that this mutant is prohibited from hormone-independent transactivation in mammalian cells. However, basal expression of a reporter gene by AR(L701H) was not impaired by the presence of 17-allylamino-17-demethoxygeldanamycin as was wild type AR, suggesting differential interactions of these receptors with molecular chaperones in animal cells.
雄激素剥夺后雄激素受体(AR)介导的前列腺癌进展的潜在机制尚未完全明确。在此基础上,我们使用酵母模型系统筛选了人类AR的天然突变体以寻找激素非依赖性活性。对43种不同突变体的初步筛选显示,具有Leu701His突变的AR(AR(L701H))表现出对lacZ报告基因的激素非依赖性激活。AR(L701H)突变体与二氢睾酮的结合程度与野生型AR相似,尽管其被激素诱导进行反式激活的能力大幅降低。随后的研究聚焦于AR(L701H)折叠至活性状态对分子伴侣的依赖性。我们发现AR(L701H)的激素非依赖性激活高度依赖于Hsp90,这表明该分子伴侣在AR(L701H)折叠中发挥作用。然而,该突变体对FKBP52水平升高无特异性反应,这表明该分子伴侣在折叠过程的激素依赖性激活阶段发挥作用。在PC3细胞中对AR(L701H)的进一步研究表明,该突变体在哺乳动物细胞中被阻止进行激素非依赖性反式激活。然而,与野生型AR不同,17-烯丙基氨基-17-去甲氧基格尔德霉素的存在并未损害AR(L701H)对报告基因的基础表达,这表明这些受体在动物细胞中与分子伴侣存在不同的相互作用。