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盐皮质激素受体中丙氨酸-773的单个氨基酸突变赋予11β-取代螺内酯激动剂特性。

A single amino acid mutation of ala-773 in the mineralocorticoid receptor confers agonist properties to 11beta-substituted spirolactones.

作者信息

Auzou G, Fagart J, Souque A, Hellal-Lévy C, Wurtz J M, Moras D, Rafestin-Oblin M E

机构信息

Institut National de la Santé et de la Recherche Médicale U439, Montpellier, France.

出版信息

Mol Pharmacol. 2000 Oct;58(4):684-91. doi: 10.1124/mol.58.4.684.

Abstract

Sequence analysis revealed a strong homology between the ligand-binding domain (LBD) of the human mineralocorticoid receptor (hMR) and glucocorticoid receptor (hGR). Nevertheless, steroids with bulky C11-substituents bind to hGR, unlike hMR. In this report, a mutant hMR, in which the residue Ala-773 facing the C11 steroid position was replaced by a glycine (A773G), was assayed for its capacity to bind steroids, to interact with receptor coactivators, and to stimulate transcription. The capacity of A773G to bind aldosterone and C11-substituted spirolactones was the same as that of the wild-type receptor. The agonist properties of aldosterone, as well as the antagonist feature of compounds bearing a 11beta-allenyl group and a C17-ketone function, remain unchanged. In contrast, C11-substituted steroids with a 17gamma-lactonic ring displayed antagonist properties with hMR and acted as potent agonists with A773G. An agonist-dependent hMR interaction with SRC-1 was observed for both the wild-type and the mutant receptors. The hMR activation process is discussed in the light of the hMR-LBD homology model based on the structural data of the human progesterone receptor LBD.

摘要

序列分析显示,人类盐皮质激素受体(hMR)和糖皮质激素受体(hGR)的配体结合结构域(LBD)之间存在高度同源性。然而,与hMR不同,具有庞大C11取代基的类固醇能与hGR结合。在本报告中,对一种突变型hMR进行了检测,该突变型hMR中面向C11类固醇位置的丙氨酸残基Ala-773被甘氨酸取代(A773G),检测其结合类固醇、与受体共激活因子相互作用以及刺激转录的能力。A773G结合醛固酮和C11取代螺内酯的能力与野生型受体相同。醛固酮的激动剂特性以及带有11β-亚烯基和C17-酮功能的化合物的拮抗剂特性保持不变。相比之下,具有17γ-内酯环的C11取代类固醇对hMR表现出拮抗剂特性,而对A773G则表现为强效激动剂。野生型和突变型受体均观察到激动剂依赖性的hMR与SRC-1的相互作用。根据基于人类孕酮受体LBD结构数据的hMR-LBD同源性模型对hMR激活过程进行了讨论。

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