Parent Alexander A, Gunther Jillian R, Katzenellenbogen John A
Department of Chemistry, University of Illinois at Urbana-Champaign, 600 South Mathews AVenue, Urbana, Illinois 61801, USA.
J Med Chem. 2008 Oct 23;51(20):6512-30. doi: 10.1021/jm800698b. Epub 2008 Sep 12.
As an alternative approach to blocking estrogen action, we have developed small molecules that directly disrupt the key estrogen receptor (ER)/coactivator interaction necessary for gene activation. The more direct, protein-protein nature of this disruption might be effective even in hormone-refractory breast cancer. We have synthesized a pyrimidine-core library of moderate size, members of which act as alpha-helix mimics to block the ERalpha/coactivator interaction. Structure-activity relationships have been explored with various C-, N-, O-, and S-substituents on the pyrimidine core. Time-resolved fluorescence resonance energy transfer and cell-based reporter gene assays show that the most active members inhibit the ERalpha/steroid receptor coactivator interaction with K i's in the low micromolar range. Through these studies, we have obtained a refined pharmacophore model for activity in this pyrimidine series. Furthermore, the favorable activities of several of these compounds support the feasibility that this coactivator binding inhibition mechanism for blocking estrogen action might provide a potential alternative approach to endocrine therapy.
作为阻断雌激素作用的另一种方法,我们开发了小分子,这些小分子可直接破坏基因激活所必需的关键雌激素受体(ER)/共激活因子相互作用。这种破坏更直接的蛋白质 - 蛋白质性质甚至在激素难治性乳腺癌中可能也是有效的。我们合成了一个中等规模的嘧啶核心文库,其成员作为α - 螺旋模拟物来阻断ERα/共激活因子相互作用。已经用嘧啶核心上的各种碳、氮、氧和硫取代基探索了构效关系。时间分辨荧光共振能量转移和基于细胞的报告基因测定表明,活性最高的成员抑制ERα/类固醇受体共激活因子相互作用,其抑制常数(Ki)在低微摩尔范围内。通过这些研究,我们获得了该嘧啶系列活性的精确药效团模型。此外,这些化合物中的几种的良好活性支持了这种通过抑制共激活因子结合来阻断雌激素作用的机制可能为内分泌治疗提供潜在替代方法的可行性。