Institute of Applied Synthetic Chemistry , TU Wien , Getreidemarkt 9/163-OC , 1060 Vienna , Austria.
Department of Molecular Neurosciences , Medical University of Vienna , Spitalgasse 4 , 1090 Vienna , Austria.
J Nat Prod. 2018 Nov 26;81(11):2419-2428. doi: 10.1021/acs.jnatprod.8b00439. Epub 2018 Oct 26.
The total syntheses of all stereoisomers of notoincisol A, a recently isolated natural product with potential anti-inflammatory activity, are reported. The asymmetric synthesis was conducted employing a lipase-mediated kinetic resolution, which enables easy access to all required chiral building blocks with the aim of establishing the absolute configuration of the naturally occurring isomer. This was achieved by comparison of optical properties of the isolated compound with the synthetic derivatives obtained. Moreover, an assessment of the biological activity on PPARγ (peroxisome proliferator-activated receptor gamma) as a prominent receptor related to inflammation is reported. Only the natural isomer was found to activate the PPARγ receptor, and this phenomenon could be explained based on molecular docking studies. In addition, the pharmacological profiles of the isomers were determined using the GABA (gamma-aminobutyric acid A) ion channel receptor as a representative target for allosteric modulation related to diverse CNS activities. These compounds were found to be weak allosteric modulators of the α1β3 and α1β2γ2 receptor subtypes.
报道了新型天然产物 notoincisol A 的所有立体异构体的全合成,该化合物具有潜在的抗炎活性。采用脂肪酶介导的动力学拆分进行不对称合成,这使得所有所需的手性砌块都可以轻松获得,目的是确定天然异构体的绝对构型。通过比较分离化合物的光学性质与合成衍生物来实现这一点。此外,还报告了对作为与炎症相关的重要受体的过氧化物酶体增殖物激活受体 γ (PPARγ) 的生物活性的评估。仅发现天然异构体能够激活 PPARγ 受体,并且可以基于分子对接研究来解释这种现象。此外,还使用 GABA(γ-氨基丁酸 A)离子通道受体作为与各种中枢神经系统活动相关的变构调节的代表性靶标,确定了异构体的药理学特征。这些化合物被发现是α1β3 和 α1β2γ2 受体亚型的弱变构调节剂。