首页> 外文OA文献 >Selective Orthosteric Free Fatty Acid Receptor 2 (FFA2) Agonists: IDENTIFICATION OF THE STRUCTURAL AND CHEMICAL REQUIREMENTS FOR SELECTIVE ACTIVATION OF FFA2 VERSUS FFA3*
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Selective Orthosteric Free Fatty Acid Receptor 2 (FFA2) Agonists: IDENTIFICATION OF THE STRUCTURAL AND CHEMICAL REQUIREMENTS FOR SELECTIVE ACTIVATION OF FFA2 VERSUS FFA3*

机译:选择性正构游离脂肪酸受体2(FFA2)激动剂:识别FFA2与FFA3选择性激活的结构和化学要求*

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摘要

Free fatty acid receptor 2 (FFA2; GPR43) is a G protein-coupled seven-transmembrane receptor for short-chain fatty acids (SCFAs) that is implicated in inflammatory and metabolic disorders. The SCFA propionate has close to optimal ligand efficiency for FFA2 and can hence be considered as highly potent given its size. Propionate, however, does not discriminate between FFA2 and the closely related receptor FFA3 (GPR41). To identify FFA2-selective ligands and understand the molecular basis for FFA2 selectivity, a targeted library of small carboxylic acids was examined using holistic, label-free dynamic mass redistribution technology for primary screening and the receptor-proximal G protein [35S]guanosine 5′-(3-O-thio)triphosphate activation, inositol phosphate, and cAMP accumulation assays for hit confirmation. Structure-activity relationship analysis allowed formulation of a general rule to predict selectivity for small carboxylic acids at the orthosteric binding site where ligands with substituted sp3-hybridized α-carbons preferentially activate FFA3, whereas ligands with sp2- or sp-hybridized α-carbons prefer FFA2. The orthosteric binding mode was verified by site-directed mutagenesis: replacement of orthosteric site arginine residues by alanine in FFA2 prevented ligand binding, and molecular modeling predicted the detailed mode of binding. Based on this, selective mutation of three residues to their non-conserved counterparts in FFA3 was sufficient to transfer FFA3 selectivity to FFA2. Thus, selective activation of FFA2 via the orthosteric site is achievable with rather small ligands, a finding with significant implications for the rational design of therapeutic compounds selectively targeting the SCFA receptors.
机译:游离脂肪酸受体2(FFA2; GPR43)是G蛋白偶联的短链脂肪酸(SCFA)的七跨膜受体,与炎症和代谢性疾病有关。 SCFA丙酸酯具有接近FFA2最佳配体的效率,因此,鉴于其大小,可以认为是高效的。然而,丙酸并不能区分FFA2和密切相关的受体FFA3(GPR41)。为了鉴定FFA2选择性配体并了解FFA2选择性的分子基础,使用了整体无标记动态质量重新分配技术对初级羧酸的目标库进行了初步筛选,并使用了受体近端G蛋白[35S]鸟苷5' -(3-O-硫代)三磷酸活化,磷酸肌醇和cAMP累积测定法可用于命中确认。通过结构-活性关系分析,可以制定一般规则来预测正构结合位点对小羧酸的选择性,在该位点,具有取代的sp3-杂化的α-碳的配体优先激活FFA3,而具有sp2-或杂化的α-碳的配体更喜欢FFA2。通过位点定向诱变验证了正构结合模式:在FFA2中用丙氨酸取代正构位精氨酸残基阻止了配体结合,并且分子模型预测了结合的详细模式。基于此,FFA3中三个残基向其非保守对应物的选择性突变足以将FFA3选择性转移至FFA2。因此,使用相当小的配体就可以通过正构位点选择性激活FFA2,这一发现对合理设计选择性靶向SCFA受体的治疗化合物具有重要意义。

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