Popescu Laura, Rau Oliver, Böttcher Jark, Syha Yvonne, Schubert-Zsilavecz Manfred
Johann Wolfgang Goethe University Frankfurt, Institute of Pharmaceutical Chemistry/ZAFES, Frankfurt, Germany.
Arch Pharm (Weinheim). 2007 Jul;340(7):367-71. doi: 10.1002/ardp.200700042.
Pirinixic acid is known for its peroxisome proliferator-activated receptor (PPAR) agonistic action. In a recent publication, we have shown that aliphatic alpha-substitution of pirinixic acid enhances both PPARalpha and PPARgamma agonism. The goal of this study was to evaluate, whether the PPAR agonism of pirinixic acid may be also maintained in quinoline-based derivatives. The present study revealed that the mere substitution of the dimethyl aniline moiety of pirinixic acid by quinoline leads to a total loss of PPARalpha/gamma agonism, whereas concomitant alpha-substitution with n-butyl or n-hexyl groups restores and even enforces PPAR activation, leading to potent dual PPARalpha/gamma agonists. In the following we report the synthesis of quinoline-based derivatives of pirinixic acid, which in a Gal4-based luciferase-reporter gene assay proved to be potent dual PPARalpha/gamma agonists. Molecular docking of compound 4 with FlexX suggests a binding mode resembling to that of tesaglitazar.
吡罗昔康酸以其过氧化物酶体增殖物激活受体(PPAR)激动作用而闻名。在最近的一篇出版物中,我们已经表明,吡罗昔康酸的脂肪族α-取代增强了PPARα和PPARγ激动作用。本研究的目的是评估吡罗昔康酸的PPAR激动作用在喹啉基衍生物中是否也能保持。本研究表明,仅用喹啉取代吡罗昔康酸的二甲基苯胺部分会导致PPARα/γ激动作用完全丧失,而同时用正丁基或正己基进行α-取代可恢复甚至增强PPAR激活,从而产生强效的双PPARα/γ激动剂。接下来我们报道了吡罗昔康酸喹啉基衍生物的合成,在基于Gal4的荧光素酶报告基因测定中,这些衍生物被证明是强效的双PPARα/γ激动剂。化合物4与FlexX的分子对接表明其结合模式类似于替格列扎。