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视黄酸X受体(RXRs)对激动剂配体的分子识别。

Molecular recognition of agonist ligands by RXRs.

作者信息

Egea Pascal F, Mitschler André, Moras Dino

机构信息

Laboratoire de Biologie et Génomique Structurales, Université Louis Pasteur, Parc d'Innovation BP163, 67404 Illkirch cedex, France.

出版信息

Mol Endocrinol. 2002 May;16(5):987-97. doi: 10.1210/mend.16.5.0823.

Abstract

The nuclear receptor RXR is an obligate partner in many signal transduction pathways. We report the high-resolution structures of two complexes of the human RXRalpha ligand-binding domain specifically bound to two different and chemically unrelated agonist compounds: docosa hexaenoic acid, a natural derivative of eicosanoic acid, present in mammalian cells and recently identified as a potential endogenous RXR ligand in the mouse brain, and the synthetic ligand BMS 649. In both structures the RXR-ligand-binding domain forms homodimers and exhibits the active conformation previously observed with 9-cis-RA. Analysis of the differences in ligand-protein contacts (predominantly van der Waals forces) and binding cavity geometries and volumes for the several agonist-bound RXR structures clarifies the structural features important for ligand recognition. The L-shaped ligand-binding pocket adapts to the diverse ligands, especially at the level of residue N306, which might thus constitute a new target for drug-design. Despite its highest affinity 9-cis-RA displays the lowest number of ligand-protein contacts. These structural results support the idea that docosa hexaenoic acid and related fatty acids could be natural agonists of RXRs and question the real nature of the endogenous ligand(s) in mammalian cells.

摘要

核受体RXR是许多信号转导途径中的必需伴侣。我们报道了人RXRα配体结合结构域与两种不同且化学性质不相关的激动剂化合物特异性结合的两种复合物的高分辨率结构:二十二碳六烯酸,一种存在于哺乳动物细胞中的二十碳脂肪酸的天然衍生物,最近被鉴定为小鼠脑中潜在的内源性RXR配体,以及合成配体BMS 649。在这两种结构中,RXR配体结合结构域均形成同二聚体,并呈现出先前在9-顺式视黄酸中观察到的活性构象。对几种激动剂结合的RXR结构中配体-蛋白质接触(主要是范德华力)以及结合腔几何形状和体积差异的分析,阐明了对配体识别重要的结构特征。L形配体结合口袋适应多种配体,特别是在残基N306水平,因此这可能构成药物设计的新靶点。尽管9-顺式视黄酸具有最高亲和力,但它显示出最少的配体-蛋白质接触。这些结构结果支持二十二碳六烯酸和相关脂肪酸可能是RXRs天然激动剂的观点,并对哺乳动物细胞中内源性配体的真实性质提出质疑。

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