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双香叶薄荷醇作为一种具有独特结合模式的选择性 RXR 激动剂的结构基础。

Structure basis of bigelovin as a selective RXR agonist with a distinct binding mode.

机构信息

State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, 555 Zuchongzhi Road, Shanghai 201203, China.

出版信息

J Mol Biol. 2011 Mar 18;407(1):13-20. doi: 10.1016/j.jmb.2011.01.032. Epub 2011 Jan 22.

Abstract

The nuclear receptor retinoid X receptor (RXR) functions potently in the regulation of homeostasis and cell development, while rexinoids as RXR agonists have proved their therapeutic potential in the treatment of metabolic diseases and cancer. Here, the natural product bigelovin was identified as a selective RXRα agonist. Interestingly, this compound could not transactivate RXRα:RXRα homodimer but could enhance the transactivation of RXRα:peroxisome proliferator-activated receptor γ heterodimer and repress that of RXRα:liver X receptor (LXR) α heterodimer, while it had no effects on RXRα:farnesoid X receptor heterodimer. Considering that the effective role of LXR response element involved transactivation of sterol regulatory element-binding protein-1c mediated by RXRα:LXRα in triglyceride elevation, such LXR response element repressing by bigelovin has obviously addressed its potency for further research. Moreover, our determined crystal structure of the bigelovin-activated RXRα ligand-binding domain with the coactivator human steroid receptor coactivator-1 peptide revealed that bigelovin adopted a distinct binding mode. Compared with the known RXR ligands, bigelovin lacks the acidic moiety in structure, which indicated that the acidic moiety rendered little effects on RXR activation. Our results have thereby provided new insights into the structure-based selective rexinoids design with bigelovin as a potential lead compound.

摘要

核受体视黄酸 X 受体 (RXR) 在调节体内平衡和细胞发育方面发挥着强大的作用,而作为 RXR 激动剂的类视黄醇已被证明在治疗代谢疾病和癌症方面具有治疗潜力。在这里,天然产物 bigelovin 被鉴定为选择性 RXRα 激动剂。有趣的是,该化合物不能反式激活 RXRα:RXRα 同源二聚体,但可以增强 RXRα:过氧化物酶体增殖物激活受体 γ 异源二聚体的反式激活,并抑制 RXRα:肝 X 受体 (LXR)α 异源二聚体的反式激活,而对 RXRα:法尼醇 X 受体异源二聚体没有影响。考虑到 LXR 反应元件的有效作用涉及 RXRα:LXRα 介导的固醇调节元件结合蛋白-1c 的转录激活在甘油三酯升高中,bigelovin 对 LXR 反应元件的抑制明显增强了其进一步研究的效力。此外,我们通过测定与共激活剂人甾体受体共激活因子-1 肽结合的 bigelovin 激活的 RXRα 配体结合域的晶体结构,揭示了 bigelovin 采用了独特的结合模式。与已知的 RXR 配体相比,bigelovin 在结构上缺乏酸性部分,这表明酸性部分对 RXR 激活的影响很小。因此,我们的研究结果为基于结构的选择性类视黄醇设计提供了新的见解,以 bigelovin 为潜在的先导化合物。

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