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首页> 外文期刊>Molecular pharmacology. >2-Methoxyestradiol and analogs as novel antiproliferative agents: analysis of three-dimensional quantitative structure-activity relationships for DNA synthesis inhibition and estrogen receptor binding.
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2-Methoxyestradiol and analogs as novel antiproliferative agents: analysis of three-dimensional quantitative structure-activity relationships for DNA synthesis inhibition and estrogen receptor binding.

机译:2-甲氧基雌二醇和类似物作为新型抗增殖剂:分析DNA合成抑制和雌激素受体结合的三维定量结构-活性关系。

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摘要

2-Methoxyestradiol (2-MEO), a metabolite of estrogen, is an attractive lead compound for the development of novel antitumor and anti-inflammatory agents, because it embodies antiproliferative and antiangiogenic activities in one molecule. However, the affinity of 2-MEO for the estrogen receptor would lead to undesirable side effects. As a prelude to the design of 2-MEO-like compounds with an optimal activity profile, we assayed 2-MEO and a series of analogs for their ability to cause G(1) cell-cycle arrest (by measuring inhibition of DNA synthesis in human cultured airway smooth muscle) and to inhibit binding of [(3)H]estradiol at the estrogen receptor (ER; from rat uterine smooth muscle). One compound, a diacetoxy enediol derivative, was identified with reasonable potency for DNA synthesis (pIC(50) = 5.97) but showed negligible affinity for the ER (pIC(50) < 5). Three-dimensional quantitative structure-activity relationships were developed for these activities using comparative molecular field analysis (CoMFA) techniques. Comparison of optimized CoMFA models revealed distinct structural requirements for DNA synthesis inhibition and ER binding. For example, DNA synthesis inhibition is enhanced by electropositive substitutions in the 2-position below the plane of the steroid A-ring, whereas ER binding is favored by electronegative substitution in this position. Similarly, DNA synthesis inhibition correlates negatively with increased steric bulk in regions clustered around the A and B rings; changes in steric bulk in these regions has little correlation with ER binding. These observations will guide the design of new analogs with improved potency for desired characteristics (e.g., DNA synthesis inhibition) with minimal unwanted activities (e.g., ER binding).
机译:2-甲氧基雌二醇(2-MEO)是雌激素的代谢产物,是开发新型抗肿瘤和抗炎药的引人注目的先导化合物,因为它在一个分子中体现了抗增殖和抗血管生成的活性。但是,2-MEO对雌激素受体的亲和力将导致不良的副作用。作为设计具有最佳活性谱的2-MEO样化合物的前奏,我们分析了2-MEO和一系列类似物引起G(1)细胞周期停滞的能力(通过测量DNA合成的抑制作用)人类培养的气道平滑肌)并抑制[(3)H]雌二醇与雌激素受体的结合(ER;来自大鼠子宫平滑肌)。鉴定出一种化合物,一种二乙酰氧基烯二醇衍生物,具有合理的DNA合成能力(pIC(50)= 5.97),但对ER的亲和力却可以忽略不计(pIC(50)<5)。使用比较分子场分析(CoMFA)技术,为这些活性建立了三维定量结构-活性关系。优化的CoMFA模型的比较揭示了DNA合成抑制和ER结合的独特结构要求。例如,在类固醇A环平面下方的2位上通过正电取代增强了DNA的合成抑制作用,而在该位置上的负电取代有利于ER结合。类似地,DNA合成抑制与A和B环周围聚集的区域中增加的空间体积负相关;这些区域的空间体积变化与ER结合几乎没有相关性。这些观察将指导新的类似物的设计,该新的类似物具有对所需特征(例如,DNA合成抑制)的改善的效力,并且具有最小的不需要的活性(例如,ER结合)。

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