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雌激素二氮烯:结构独特的杂环非甾体雌激素,对雌激素受体亚型具有选择性。

Estrogenic diazenes: heterocyclic non-steroidal estrogens of unusual structure with selectivity for estrogen receptor subtypes.

作者信息

Ghosh Usha, Ganessunker Deshanie, Sattigeri Viswajanani J, Carlson Kathryn E, Mortensen Deborah J, Katzenellenbogen Benita S, Katzenellenbogen John A

机构信息

Department of Chemistry, University of Illinois, IL 61801, Urbana, USA.

出版信息

Bioorg Med Chem. 2003 Feb 20;11(4):629-57. doi: 10.1016/s0968-0896(02)00309-7.

Abstract

Estrogens regulate many biological functions, often acting in a tissue-selective manner. Their tissue-selective action is believed to involve differential estrogen action through the two estrogen receptor (ER) subtypes, ERalpha and ERbeta, as well as differential interaction of the ligand-receptor complexes with promoters and coregulator proteins. In the latter case, selectivity is based on the induction of specific conformations of the ligand-ER complex, conformations that are influenced by the structure of the ligand. Estrogen pharmaceuticals having an ideal balance of tissue-selective activity are being sought for menopausal hormone replacement, breast cancer prevention and therapy, and other actions. To expand on the structural diversity of ER ligands that might show such tissue selectivity, we have prepared a series of diazenes (pyrazines, pyrimidines, and pyridazines) substituted with two to four aryl groups and various short-chain aliphatic substituents. All of the pyrazine and pyrimidines bind to ER, some with high affinity and with a considerable degree of preferential binding to either ERalpha or ERbeta. One pyrimidine and one pyrazine have ERalpha affinity preferences as high as 23 and 9, respectively, and one pyrimidine has an ERbeta affinity preference of 8. The pyridazines, by contrast, are quite polar and have only very low binding affinity for the ER. In cell-based transcription assays, several of the pyrimidines and a pyrazine were found to be considerably more agonistic on ERalpha than on ERbeta. Because these triaryl diazenes have the largest volumes among the ER ligands so far investigated, their high affinity demonstrates the flexibility of the ligand binding pocket of the ERs and its tolerance for large substituents. Thus, these novel heterocyclic ligands expand the repertoire of chemical structures that bind to the estrogen receptor, and they could prove to be useful in elucidating the biological behavior of the two ER subtypes and in forming the basis for new estrogen pharmaceuticals having desirable tissue selectivity.

摘要

雌激素调节多种生物学功能,常以组织选择性方式发挥作用。其组织选择性作用被认为涉及通过两种雌激素受体(ER)亚型ERα和ERβ的不同雌激素作用,以及配体 - 受体复合物与启动子和共调节蛋白的不同相互作用。在后一种情况下,选择性基于配体 - ER复合物特定构象的诱导,这些构象受配体结构影响。目前正在寻找具有理想组织选择性活性平衡的雌激素药物用于更年期激素替代、乳腺癌预防和治疗以及其他用途。为了扩展可能显示这种组织选择性的ER配体的结构多样性,我们制备了一系列被两到四个芳基和各种短链脂肪族取代基取代的二氮烯(吡嗪、嘧啶和哒嗪)。所有吡嗪和嘧啶都与ER结合,有些具有高亲和力,并且对ERα或ERβ有相当程度的优先结合。一种嘧啶和一种吡嗪对ERα的亲和力偏好分别高达23和9,一种嘧啶对ERβ的亲和力偏好为8。相比之下,哒嗪极性很大,对ER的结合亲和力非常低。在基于细胞的转录测定中,发现几种嘧啶和一种吡嗪对ERα的激动作用比对ERβ的激动作用大得多。由于这些三芳基二氮烯在迄今为止研究的ER配体中体积最大,它们的高亲和力证明了ER配体结合口袋的灵活性及其对大取代基的耐受性。因此,这些新型杂环配体扩展了与雌激素受体结合的化学结构库,并且它们可能被证明可用于阐明两种ER亚型的生物学行为,并为具有理想组织选择性的新型雌激素药物奠定基础。

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