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首页> 外文期刊>Journal of Medicinal Chemistry >Estrogen receptor subtype-selective ligands: asymmetric synthesis and biological evaluation of cis- and trans-5,11-dialkyl- 5,6,11, 12-tetrahydrochrysenes.
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Estrogen receptor subtype-selective ligands: asymmetric synthesis and biological evaluation of cis- and trans-5,11-dialkyl- 5,6,11, 12-tetrahydrochrysenes.

机译:雌激素受体亚型选择性配体:顺式和反式-5,11-二烷基-5,6,11,12-四氢瓜氨酸的不对称合成和生物学评估。

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We have recently reported that racemic 5,11-cis-diethyl-5,6,11, 12-tetrahydrochrysene-2,8-diol (THC, rac-2b) acts as an agonist on estrogen receptor alpha (ERalpha) and as a complete antagonist on estrogen receptor beta (ERbeta) (Sun et al. Endocrinology 1999, 140, 800-804). To further investigate this novel ER subtype-selective estrogenic activity, we have synthesized a series of cis- and trans-dialkyl THCs. cis-Dimethyl, -diethyl, and -dipropyl THCs 2a-c were prepared in a highly enantio- and diastereoselective manner by the acyloin condensation of enantiomerically pure alpha-alkyl-beta-arylpropionic esters, followed by a Lewis acid-mediated double cyclization under conditions of minimal epimerization. ERalpha and ERbeta binding affinity of both cis and trans isomers of dimethyl, diethyl, and dipropyl THCs was determined in competitive binding assays, and their transcriptional activity was determined in reporter gene assays in mammalian cells. Nearly all THCs examined were found to be affinity-selective for ERbeta. All these THCs are agonists on ERalpha, and THCs with small substituents are agonists on both ERalpha and ERbeta. As substituent size was increased, ERbeta-selective antagonism developed first in the (R,R)-cis enantiomer series and finally in the trans diastereomer and (S,S)-cis enantiomer series. The most potent and selective ligand was identified as (R,R)-cis-diethyl THC 2b, which mimicked the ERbeta-selective antagonist character of racemic cis-diethyl THC 2b. This study illustrates that the antagonist character in THC ligands for ERbeta depends in a progressive way on the size and geometric disposition of substituent groups and suggests that the induction of an antagonist conformation in ERbeta can be achieved with these ligands with less steric perturbation than in ERalpha. Furthermore, antagonists that are selectively effective on ERbeta can have structures that are very different from the typical antiestrogens tamoxifen and raloxifene, which are antagonists on both ERalpha and ERbeta.
机译:我们最近报道,外消旋5,11-顺二乙基-5,6,11,12-四氢丙烯-2,8-二醇(THC,rac-2b)充当雌激素受体α(ERalpha)的激动剂和雌激素受体β(ERbeta)的完全拮抗剂(Sun et al。Endocrinology 1999,140,800-804)。为了进一步研究这种新型的ER亚型选择性雌激素活性,我们合成了一系列顺式和反式二烷基四氢大麻酚。通过对映体纯的α-烷基-β-芳基丙酸酯的酰基糊精缩合,然后在温度下通过路易斯酸介导的双环化,以高度对映和非对映选择性的方式制备顺式-二甲基,-二乙基和-二丙基THC 2a-c。最小差向异构的条件。在竞争性结合试验中确定了二甲基,二乙基和二丙基四氢大麻酚的顺式和反式异构体的ERalpha和ERbeta结合亲和力,并在哺乳动物细胞的报道基因试验中确定了它们的转录活性。发现几乎所有检查的THC对ERbeta都具有亲和力。所有这些THC都是ERalpha上的激动剂,具有小的取代基的THC都是ERalpha和ERbeta上的激动剂。随着取代基尺寸的增加,ERbeta选择性拮抗作用首先在(R,R)-顺式对映体系列中发展,最后在反式非对映体和(S,S)-顺式对映体系列中发展。最有效和选择性最高的配体被鉴定为(R,R)-顺式二乙基THC 2b,其模仿外消旋式顺式二乙基THC 2b的ERbeta选择性拮抗剂特征。这项研究表明,ERβ的THC配体中的拮抗剂特征逐步取决于取代基的大小和几何位置,并表明,与ERα相比,这些配体可以在较小的空间扰动下诱导ERβ中的拮抗剂构象。 。此外,对ERbeta选择性有效的拮抗剂可能具有与典型的抗雌激素他莫昔芬和雷洛昔芬(ERalpha和ERbeta都是拮抗剂)非常不同的结构。

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