Institute of Pharmaceutical Chemistry, Goethe University Frankfurt, D-60438 Frankfurt, Germany.
Department of Pharmacy, Ludwig-Maximilians-Universität München, D-81377 Munich, Germany.
J Am Chem Soc. 2023 Jul 12;145(27):14802-14810. doi: 10.1021/jacs.3c03417. Epub 2023 Jun 29.
The lipid-sensing transcription factor PPARγ is the target of antidiabetic thiazolidinediones (TZD). At two sites within its ligand binding domain, it also binds oxidized vitamin E metabolites and the vitamin E mimetic garcinoic acid. While the canonical interaction within the TZD binding site mediates classical PPARγ activation, the effects of the second binding on PPARγ activity remain elusive. Here, we identified an agonist mimicking dual binding of vitamin E metabolites and developed a selective ligand of the second site, unveiling potential noncanonical regulation of PPARγ activities. We found that this alternative binding event can simultaneously occur with orthosteric ligands and it exerted different effects on PPARγ-cofactor interactions compared to both orthosteric PPARγ agonists and antagonists, indicating the diverse roles of the two binding sites. Alternative site binding lacked the pro-adipogenic effect of TZD and mediated no classical PPAR signaling in differential gene expression analysis but markedly diminished FOXO signaling, suggesting potential therapeutic applications.
脂质感应转录因子 PPARγ 是抗糖尿病噻唑烷二酮类药物 (TZD) 的靶标。在其配体结合域内的两个位点,它还结合氧化的维生素 E 代谢物和维生素 E 类似物 Garcinoic 酸。虽然 TZD 结合位点内的经典相互作用介导了经典的 PPARγ 激活,但第二个结合对 PPARγ 活性的影响仍然难以捉摸。在这里,我们鉴定了一种模拟维生素 E 代谢物双重结合的激动剂,并开发了第二个位点的选择性配体,揭示了 PPARγ 活性的潜在非经典调节。我们发现,这种替代结合事件可以与正位配体同时发生,并且与正位 PPARγ 激动剂和拮抗剂相比,它对 PPARγ 共因子相互作用产生不同的影响,表明两个结合位点的不同作用。替代位点结合缺乏 TZD 的促脂肪生成作用,并且在差异基因表达分析中没有介导经典的 PPAR 信号传导,但明显减弱 FOXO 信号传导,表明可能有治疗应用。