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一种与他莫昔芬相关的新型临床相关抗雌激素(GW7604)对雌激素受体α的分子作用机制

Molecular mechanism of action at estrogen receptor alpha of a new clinically relevant antiestrogen (GW7604) related to tamoxifen.

作者信息

Bentrem D, Dardes R, Liu H, MacGregor-Schafer J, Zapf J, Jordan V

机构信息

Department of Surgery, The Robert H. Lurie Comprehensive Cancer Center, Northwestern University Medical School, Chicago, Illinois 60611, USA.

出版信息

Endocrinology. 2001 Feb;142(2):838-46. doi: 10.1210/endo.142.2.7932.

Abstract

Tamoxifen is the endocrine treatment of choice for all stages of estrogen receptor (ER)-positive breast cancer, and it is the first drug approved to reduce the incidence of breast cancer in high-risk women. Unfortunately, tamoxifen also possesses some estrogen-like effects in the uterus that cause a modest increase in the risk of endometrial cancer. GW5638 is a tamoxifen derivative with a novel carboxylic acid side chain with no uterotropic activity in the rat (Willson et al., J Med Chem, 1994, 37:1550-1552). We have compared and contrasted the actions of 4-hydroxytamoxifen (4-OHT, the active metabolite of tamoxifen) with GW7604 [the presumed metabolite of GW5638 in breast (MCF-7) and endometrial (ECC-1) cell lines in vitro]. GW7604 did not cause the growth of ECC-1 cells at any concentration (10(-11)-10(-6) M), but 4-OHT was weakly estrogen-like at low concentrations (10(-11)-10(-10) M). Compounds (10(-7) M) blocked the growth promoting action of estradiol (10(-10) M) in both ECC-1 and MCF-7 cells. Western blotting was used to show that GW7604 and raloxifene did not affect ER levels significantly, compared with controls, in MCF-7 cells; whereas the pure antiestrogen ICI182,780 decreased ER levels (P < 0.05). An assay system was used that can classify compounds into tamoxifen-like, raloxifene-like, or pure antiestrogens. The assay depends on the activation of the transforming growth factor alpha (TGFalpha) gene in situ by wild-type or D351Y mutant ER stably transfected into MDA-MB-231 cells (MacGregor-Schafer et al., Cancer Res, 1999, 59:4308-4313). GW7604 inhibited both estradiol (10(-9) M) and 4-OHT (10(-8), 10(-7) M) induction of TGFalpha in a concentration related manner (10(-9)-10(-6) M). GW7604 and raloxifene stimulated TGFalpha with the D351Y ER. In contrast, ICI 182,780 (10(-6) M) did not initiate TGFalpha and blocked the induction of TGFalpha with GW7604, raloxifene, and 4-OHT in D351Y-transfected cells. Using computer-assisted molecular models of ER complexes, we found that the antiestrogenic side chain of 4-OHT weakly interacted with the surface amino acid 351 (aspartate), but the carboxylic acid of GW7604 caused a strong repulsion of aspartate 351. We propose that GW7604 is less estrogen-like than 4-OHT, because it disrupts the surface charge around aa351 required for coactivator docking in the 4-OHT:ER complex. This charge is restored in the D351Y ER, thus converting GW7604 from an antiestrogen to an estrogen-like molecule.

摘要

他莫昔芬是雌激素受体(ER)阳性乳腺癌各阶段内分泌治疗的首选药物,也是首个被批准用于降低高危女性乳腺癌发病率的药物。不幸的是,他莫昔芬在子宫中也具有一些雌激素样作用,会使子宫内膜癌风险适度增加。GW5638是一种他莫昔芬衍生物,带有新型羧酸侧链,在大鼠中无子宫促生长活性(威尔森等人,《药物化学杂志》,1994年,37卷:1550 - 1552页)。我们已对4 - 羟基他莫昔芬(4 - OHT,他莫昔芬的活性代谢物)与GW7604 [GW5638在体外乳腺癌(MCF - 7)和子宫内膜癌(ECC - 1)细胞系中的假定代谢物]的作用进行了比较和对比。GW7604在任何浓度(10⁻¹¹ - 10⁻⁶ M)下均未引起ECC - 1细胞生长,但4 - OHT在低浓度(10⁻¹¹ - 10⁻¹⁰ M)时具有微弱的雌激素样作用。化合物(10⁻⁷ M)在ECC - 1和MCF - 7细胞中均阻断了雌二醇(10⁻¹⁰ M)的促生长作用。蛋白质免疫印迹法用于显示,与对照相比,GW7604和雷洛昔芬在MCF - 7细胞中对ER水平无显著影响;而纯抗雌激素药物ICI182,780降低了ER水平(P < 0.05)。使用了一种可将化合物分类为他莫昔芬样、雷洛昔芬样或纯抗雌激素的检测系统。该检测依赖于稳定转染到MDA - MB - 231细胞中的野生型或D351Y突变型ER原位激活转化生长因子α(TGFα)基因(麦格雷戈 - 谢弗等人,《癌症研究》,1999年,59卷:4308 - 4313页)。GW7604以浓度相关方式(10⁻⁹ - 10⁻⁶ M)抑制雌二醇(10⁻⁹ M)和4 - OHT(10⁻⁸、10⁻⁷ M)诱导的TGFα。GW7604和雷洛昔芬通过D351Y ER刺激TGFα。相比之下,ICI 182,780(10⁻⁶ M)未引发TGFα,并在D351Y转染细胞中阻断了GW7604、雷洛昔芬和4 - OHT诱导的TGFα。使用ER复合物的计算机辅助分子模型,我们发现4 - OHT的抗雌激素侧链与表面氨基酸351(天冬氨酸)弱相互作用,但GW7604的羧酸对天冬氨酸351产生强烈排斥。我们提出GW7604的雌激素样作用比4 - OHT小,因为它破坏了4 - OHT:ER复合物中辅助激活因子对接所需的aa⁃351周围的表面电荷。在D351Y ER中这种电荷得以恢复,从而使GW7604从抗雌激素分子转变为雌激素样分子。

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