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鉴定和表征一种配体选择性盐皮质激素受体辅激活子。

Identification and characterization of a ligand-selective mineralocorticoid receptor coactivator.

机构信息

Prince Henry's Institute of Medical Research, Clayton, Victoria, Australia.

Prince Henry's Institute of Medical Research, Clayton, Victoria, Australia

出版信息

FASEB J. 2014 Oct;28(10):4200-10. doi: 10.1096/fj.13-242479. Epub 2014 Jun 6.

Abstract

The mineralocorticoid receptor (MR) is unique in responding to 2 physiological ligands: aldosterone and cortisol. In epithelial tissues, aldosterone selectivity is determined by the activity of 11β-hydroxysteroid dehydrogenase type 2. In other tissues, cortisol is the primary ligand. To understand the structural determinants of ligand-specific MR activation, we sought to identify coregulatory molecules that interact with the ligand-binding domain (LBD) of the MR. A yeast-2-hybrid (Y2H) kidney cDNA library was screened with the human MR-LBD in the presence of aldosterone and cortisol. One clone, identified as aldosterone-specific in the Y2H assay, exhibited a 7-fold greater response, aldosterone vs. cortisol, in a mammalian-2-hybrid (M2H) assay. This clone encodes the region of the tesmin gene that has 2 leucine-x-x-leucine-leucine (LxxLL) motifs. Full-length tesmin coactivates (>2-fold) MR-mediated transactivation in the presence of aldosterone, but not of cortisol; this specificity is observed with a range of promoters. GST pulldown and coimmunoprecipitation of the MR by tesmin supports a direct interaction, mediated by the 2 LxxLL motifs. Tesmin thus represents a novel MR coregulator that exhibits a differential interaction, providing further evidence of the adoption of ligand-dependent conformations by the MR-LBD.

摘要

盐皮质激素受体 (MR) 是唯一对 2 种生理配体:醛固酮和皮质醇有反应的受体。在上皮组织中,醛固酮的选择性取决于 11β-羟甾类脱氢酶 2 的活性。在其他组织中,皮质醇是主要的配体。为了了解配体特异性 MR 激活的结构决定因素,我们试图确定与 MR 配体结合域 (LBD) 相互作用的共调节分子。使用人 MR-LBD 在醛固酮和皮质醇存在的情况下,用酵母双杂交 (Y2H) 肾脏 cDNA 文库进行筛选。在 Y2H 测定中鉴定为醛固酮特异性的一个克隆,在哺乳动物双杂交 (M2H) 测定中,对醛固酮的反应比皮质醇高 7 倍。该克隆编码 tesmin 基因的区域,该区域具有 2 个亮氨酸-x-x-亮氨酸-亮氨酸 (LxxLL) 基序。在存在醛固酮的情况下,全长 tesmin 可增强 (>2 倍) MR 介导的转录激活,但不能增强皮质醇;这种特异性在一系列启动子中观察到。GST 下拉和 tesmin 通过 MR 的共免疫沉淀支持直接相互作用,该相互作用由 2 个 LxxLL 基序介导。因此,Tesmin 代表一种新型的 MR 共调节剂,表现出不同的相互作用,进一步证明了 MR-LBD 采用配体依赖性构象。

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