Pollinger Julius, Schierle Simone, Gellrich Leonie, Ohrndorf Julia, Kaiser Astrid, Heitel Pascal, Chaikuad Apirat, Knapp Stefan, Merk Daniel
Institute of Pharmaceutical Chemistry, Goethe University Frankfurt, Max-von-Laue-Str. 9, D-60438 Frankfurt, Germany.
ACS Med Chem Lett. 2019 Aug 16;10(9):1346-1352. doi: 10.1021/acsmedchemlett.9b00306. eCollection 2019 Sep 12.
The nuclear retinoid X receptors (RXRs) are key ligand sensing transcription factors that serve as universal nuclear receptor heterodimer partners and are thus involved in numerous physiological processes. Therapeutic targeting of RXRs holds high potential but available RXR activators suffer from limited safety. Selectivity for RXR subtypes or for certain RXR heterodimers are promising strategies for safer RXR modulation. Here, we report systematic structure-activity relationship studies on biphenyl carboxylates as new RXR ligand chemotype. We discovered specific structural modifications that enhance potency on RXRs, govern subtype preference, and vary modulation of different RXR heterodimers. Fusion of these structural motifs enabled specific tuning of subtype preferential profiles with markedly improved potency. Our results provide further evidence that RXR subtype selective ligands can be designed and present a novel chemotype of RXR modulators that can be tuned for subtype and heterodimer preferences.
核视黄酸X受体(RXRs)是关键的配体感应转录因子,作为通用的核受体异二聚体伙伴,因此参与众多生理过程。对RXRs进行治疗性靶向具有很高的潜力,但现有的RXR激活剂安全性有限。对RXR亚型或某些RXR异二聚体的选择性是实现更安全的RXR调节的有前景的策略。在此,我们报告了对联苯羧酸盐作为新型RXR配体化学类型的系统构效关系研究。我们发现了特定的结构修饰,这些修饰增强了对RXRs的效力,决定了亚型偏好,并改变了对不同RXR异二聚体的调节。这些结构基序的融合能够对亚型优先谱进行特定调节,同时效力显著提高。我们的结果进一步证明,可以设计RXR亚型选择性配体,并呈现一种新型的RXR调节剂化学类型,可针对亚型和异二聚体偏好进行调节。