Macchiarulo Antonio, Gioiello Antimo, Thomas Charles, Massarotti Alberto, Nuti Roberto, Rosatelli Emiliano, Sabbatini Paola, Schoonjans Kristina, Auwerx Johan, Pellicciari Roberto
Dipartimento di Chimica e Tecnologia del Farmaco, Universita di Perugia, Via del Liceo 1, 06123 Perugia, Italy.
J Chem Inf Model. 2008 Sep;48(9):1792-801. doi: 10.1021/ci800196h. Epub 2008 Aug 13.
Bile acids regulate nongenomic actions through the activation of TGR5, a membrane receptor that is G protein-coupled to the induction of adenylate cyclase. In this work, a training set of 43 bile acid derivatives is used to develop a molecular interaction field analysis (MFA) and a 3D-quantitative structure-activity relationship study (3D-QSAR) of TGR5 agonists. The predictive ability of the resulting model is evaluated using an external set of compounds with known TGR5 activity, and six bile acid derivatives whose unknown TGR5 activity is herein assessed with in vitro luciferase assay of cAMP formation. The results show a good predictive model and indicate a statistically relevant degree of correlation between the TGR5 activity and the molecular interaction fields produced by discrete positions of the bile acid scaffold. This information is instrumental to extend on a quantitative basis the current structure-activity relationships of bile acids as TGR5 modulators and will be fruitful to design new potent and selective agonists of the receptor.
胆汁酸通过激活TGR5来调节非基因组作用,TGR5是一种与腺苷酸环化酶诱导偶联的G蛋白偶联膜受体。在这项工作中,使用一组43种胆汁酸衍生物来开展TGR5激动剂的分子相互作用场分析(MFA)和三维定量构效关系研究(3D-QSAR)。使用一组具有已知TGR5活性的外部化合物评估所得模型的预测能力,并通过cAMP形成的体外荧光素酶测定法评估六种未知TGR5活性的胆汁酸衍生物。结果显示出良好的预测模型,并表明TGR5活性与胆汁酸支架离散位置产生的分子相互作用场之间存在统计学上相关的相关程度。这些信息有助于在定量基础上扩展当前胆汁酸作为TGR5调节剂的构效关系,并且将有助于设计该受体的新型强效和选择性激动剂。