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Rational Design of a New RXR Agonist Scaffold Enabling Single-Subtype Preference for RXR alpha, RXR beta, and RXR gamma

机译:合理设计新型 RXR 激动剂支架,实现 RXR α、RXR β 和 RXR gamma 的单亚型偏好

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摘要

The three retinoid X receptor subtypes (RXR alpha, RXR beta, RXR gamma) exhibit critical regulatory roles in cell proliferation and differentiation, metabolism, and inflammation. Due to their importance in nuclear receptor signaling, RXRs are widely distributed and pan-RXR agonists cause adverse effects, but the three highly conserved RXR ligand binding sites render the development of subtype-selective ligands a major challenge. We have fused elements of known RXR ligands to obtain a new RXR agonist chemotype on which minor structural modifications enabled the development of tools with single-subtype preference for RXR alpha, RXR beta, and RXR gamma. Molecular modeling indicated different binding conformations and interaction patterns with the RXR LBDs as factors of preferential binding. In a phenotypic adipocyte differentiation experiment, only the RXR alpha preferential tool enhanced the adipogenic effects of pioglitazone, suggesting this subtype as particularly relevant in adipogenesis and highlighting the set of subtype-preferential RXR agonist tools as suitable for functional cellular studies.
机译:三种类视黄醇 X 受体亚型(RXR α、RXR β、RXR γ)在细胞增殖和分化、代谢和炎症中表现出关键的调节作用。由于其在核受体信号转导中的重要性,RXR 分布广泛,泛 RXR 激动剂会引起不良反应,但三个高度保守的 RXR 配体结合位点使亚型选择性配体的开发成为一项重大挑战。我们已经融合了已知 RXR 配体的元件,以获得一种新的 RXR 激动剂化学型,在其上进行微小的结构修饰,可以开发具有 RXR α、RXR β 和 RXR γ 单亚型偏好的工具。分子模型表明,RXR LBDs具有不同的结合构象和相互作用模式,是优先结合的因子。在表型脂肪细胞分化实验中,只有 RXR α 优先工具增强了吡格列酮的成脂作用,表明该亚型与脂肪生成特别相关,并突出了亚型优先 RXR 激动剂工具组适用于功能性细胞研究。

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