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高选择性和高效能的非平面雌激素受体 β 激动剂的设计。

Design of a highly selective and potent class of non-planar estrogen receptor β agonists.

机构信息

Department of Chemistry & Molecular Biology, University of Gothenburg, Kemivägen 10, 41296 Gothenburg, Sweden.

出版信息

ChemMedChem. 2013 Aug;8(8):1283-94. doi: 10.1002/cmdc.201300175. Epub 2013 Jun 19.

Abstract

Selective activation of the estrogen receptor β (ERβ) could be a safe approach to hormone replacement therapy for both women and men, in contrast to the estrogens currently used for women which activate both ERβ and ERα, occasionally causing severe side effects. The selective ERβ agonist AC-131 has shown efficacy in animal models of Parkinson's disease and neuropathic pain. With the use of AC-131 as template, herein we report the discovery, synthesis, and structure-activity relationship (SAR) study of a new class of dihydrobenzofurans as potent and selective ERβ agonists. The SAR was established by enantioselective synthesis, molecular modeling, and whole-cell-based functional assays. The most potent diastereomer, cis-10-SR, was shown to have an EC50 value of <1 nM, potency 100-fold higher than that of AC-131. Even more interestingly, compound trans-10-SS exhibited 1000-fold ERβ/ERα selectivity while still maintaining good potency (∼10 nM). In addition, trans-10-SS showed only partial agonist activity (30-60 % Eff.) toward ERα at 10 μM. This unprecedented selectivity could be rationalized by molecular modeling. Compound trans-10-SS appears to be the first molecule to take advantage of both conservative amino acid differences found in the α- and β-faces of the binding cavities of ERα and ERβ.

摘要

选择性激活雌激素受体 β(ERβ)可能是一种安全的激素替代疗法,适用于女性和男性,与目前用于女性的同时激活 ERβ和 ERα 的雌激素不同,后者偶尔会引起严重的副作用。选择性 ERβ 激动剂 AC-131 在帕金森病和神经病理性疼痛的动物模型中表现出疗效。利用 AC-131 作为模板,我们在此报告了一类新的二氢苯并呋喃作为有效且选择性 ERβ激动剂的发现、合成和构效关系(SAR)研究。通过对映选择性合成、分子建模和基于全细胞的功能测定建立了 SAR。最有效的非对映异构体 cis-10-SR 的 EC50 值<1 nM,效力比 AC-131 高 100 倍。更有趣的是,化合物 trans-10-SS 对 ERβ/ERα 的选择性高达 1000 倍,同时仍保持良好的效力(约 10 nM)。此外,trans-10-SS 在 10 μM 时对 ERα 仅表现出部分激动剂活性(30-60% Eff.)。这种前所未有的选择性可以通过分子建模来解释。化合物 trans-10-SS 似乎是第一个利用 ERα 和 ERβ 结合腔的 α-和 β-面保守氨基酸差异的分子。

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