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通过亲水和疏水相互作用的结合,作为一种异位嗅觉受体的选择性和有效激动剂的脱氢乙酸类似物。

Analogues of Dehydroacetic Acid as Selective and Potent Agonists of an Ectopic Odorant Receptor through a Combination of Hydrophilic and Hydrophobic Interactions.

机构信息

College of Pharmacy, Korea University, Sejong, 30019, South Korea.

Department of Brain and Cognitive Sciences, DGIST, Daegu, 42988, South Korea.

出版信息

ChemMedChem. 2017 Apr 6;12(7):477-482. doi: 10.1002/cmdc.201600612. Epub 2017 Mar 15.

Abstract

Identification of potent agonists of odorant receptors (ORs), a major class of G protein-coupled receptors, remains challenging due to complex receptor-ligand interactions. ORs are present in both olfactory and non-chemosensory tissues, indicating roles beyond odor detection that may include modulating physiological functions in non-olfactory tissues. Selective and potent agonists specific for particular ORs can be used to investigate physiological functions of ORs in non-chemosensory tissues. In this study, we designed and synthesized novel synthetic dehydroacetic acid analogues as agonists of odorant receptor 895 (Olfr895) expressed in bladder. Among the synthesized analogues, (E)-3-((E)-1-hydroxy-3-(piperidin-1-yl)allylidene)-6-methyl-2H-pyran-2,4(3H)-dione (10) exhibited extremely high agonistic activity for Olfr895 in Dual-Glo luciferase reporter (EC =9 nm), Ca imaging, and chemotactic migration assays. Molecular docking and site-directed mutagenesis studies suggested that a combination of hydrophilic and hydrophobic interactions is central to the selective and specific binding of 10 to Olfr895. The design of agonists armed with both hydrophilic and hydrophobic portions could therefore lead to highly potent and selective ligands for ectopic ORs.

摘要

由于复杂的受体-配体相互作用,识别气味受体(ORs)的有效激动剂仍然具有挑战性,ORs 存在于嗅觉和非化学感觉组织中,表明其作用超出了气味检测,可能包括调节非嗅觉组织中的生理功能。对特定 OR 具有选择性和高效性的激动剂可用于研究非化学感觉组织中 OR 的生理功能。在这项研究中,我们设计并合成了新型合成脱氢乙酸类似物作为在膀胱中表达的嗅觉受体 895(Olfr895)的激动剂。在所合成的类似物中,(E)-3-((E)-1-羟基-3-(哌啶-1-基)亚烯基)-6-甲基-2H-吡喃-2,4(3H)-二酮(10)在 Dual-Glo 荧光素酶报告基因(EC=9nm)、Ca 成像和趋化迁移测定中对 Olfr895 表现出极高的激动活性。分子对接和定点突变研究表明,亲水性和疏水性相互作用的结合对于 10 与 Olfr895 的选择性和特异性结合至关重要。因此,带有亲水性和疏水性部分的激动剂的设计可能会导致针对异位 OR 的高效和选择性配体。

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