Sato Hiroyuki, Macchiarulo Antonio, Thomas Charles, Gioiello Antimo, Une Mizuho, Hofmann Alan F, Saladin Régis, Schoonjans Kristina, Pellicciari Roberto, Auwerx Johan
Institut de Genetique et de Biologie Moléculaire et Cellulaire, Centre National de la Recherche Scientifique/INSERM/ULP, Illkirch, France.
J Med Chem. 2008 Mar 27;51(6):1831-41. doi: 10.1021/jm7015864. Epub 2008 Feb 29.
TGR5, a metabotropic receptor that is G-protein-coupled to the induction of adenylate cyclase, has been recognized as the molecular link connecting bile acids to the control of energy and glucose homeostasis. With the aim of disclosing novel selective modulators of this receptor and at the same time clarifying the molecular basis of TGR5 activation, we report herein the biological screening of a collection of natural occurring bile acids, bile acid derivatives, and some steroid hormones, which has resulted in the discovery of new potent and selective TGR5 ligands. Biological results of the tested collection of compounds were used to extend the structure-activity relationships of TGR5 agonists and to develop a binary classification model of TGR5 activity. This model in particular could unveil some hidden properties shared by the molecular shape of bile acids and steroid hormones that are relevant to TGR5 activation and may hence be used to address the design of novel selective and potent TGR5 agonists.
TGR5是一种与腺苷酸环化酶诱导相偶联的G蛋白偶联代谢型受体,已被公认为是连接胆汁酸与能量及葡萄糖稳态控制的分子纽带。为了揭示该受体的新型选择性调节剂,同时阐明TGR5激活的分子基础,我们在此报告了对一系列天然存在的胆汁酸、胆汁酸衍生物及一些甾体激素的生物学筛选,结果发现了新的强效且选择性的TGR5配体。所测试化合物集合的生物学结果被用于拓展TGR5激动剂的构效关系,并建立TGR5活性的二元分类模型。该模型尤其能够揭示胆汁酸和甾体激素分子形状所共有的一些与TGR5激活相关的隐藏特性,因此可用于指导新型选择性强效TGR5激动剂的设计。