天然产物
视黄醇X受体
化学
过氧化物酶体增殖物激活受体
选择性
生物化学
计算生物学
组合化学
受体
转录因子
细胞生物学
核受体
生物
基因
催化作用
作者
Ken‐ichi Nakashima,Eiji Yamaguchi,Chihaya Noritake,Yukari Mitsugi,Mayuki Goto,Takao Hirai,Naohito Abe,Eiji Sakai,Masayoshi Oyama,Akichika Itoh,Makoto Inoue
标识
DOI:10.1021/acschembio.0c00146
摘要
A known natural product, magnaldehyde B, was identified as an agonist of retinoid X receptor (RXR) α. Magnaldehyde B was isolated from Magnolia obovata (Magnoliaceae) and synthesized along with more potent analogs for screening of their RXRα agonistic activities. Structural optimization of magnaldehyde B resulted in the development of a candidate molecule that displayed a 440-fold increase in potency. Receptor-ligand docking simulations indicated that this molecule has the highest affinity with the ligand binding domain of RXRα among the analogs synthesized in this study. Furthermore, the selective activation of the peroxisome proliferator-activated receptor (PPAR) δ-RXR heterodimer with a stronger efficacy compared to those of PPARα-RXR and PPARγ-RXR was achieved in luciferase reporter assays using the PPAR response element driven reporter (PPRE-Luc). The PPARδ activity of the molecule was significantly inhibited by the antagonists of both RXR and PPARδ, whereas the activity of GW501516 was not affected by the RXR antagonist. Furthermore, the molecule exhibited a particularly weak PPARδ agonistic activity in reporter gene assays using the Gal4 hybrid system. The obtained data therefore suggest that the weak PPARδ agonistic activity of the optimized molecule is synergistically enhanced by its own RXR agonistic activity, indicating the potent agonistic activity of the PPARδ-RXR heterodimer.
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