Liu Weihong, Dobson Luca S, Zhang Chen, Sun Jiahui, Lowe Phillip T, Liu Yingjian, Zhuang Hanyi, O'Hagan David
Intelligent Perception Lab, Hanwang Technology Co., Ltd, Beijing 100193, China.
School of Chemistry, University of St Andrews, North Haught, St Andrews KY16 9ST, U.K.
J Med Chem. 2025 Jun 26;68(12):12562-12572. doi: 10.1021/acs.jmedchem.5c00282. Epub 2025 Jun 16.
Structure-activity relationship studies on olfactory receptors such as OR1A1 enhance an understanding of the molecular mechanism of olfactory perception. Such receptors are considered to be important in regulating physiological roles beyond olfactory perception. Here a series of linearized ketones, alcohols, and a cyclic ether, extended between the oxygen functionality and a terminal -butyl group with either -, -, or -acetylene spacers, was prepared to explore the response of human olfactory receptor OR1A1. The best agonists were -acetylene rods combined with an aryl spacer, including the -acetylene ketones and , as well as the primary aryl--acetylene alcohol and the corresponding secondary alcohol . In the latter case, there was a clear stimulatory preference for the ()- enantiomer. The experimental data were supported by molecular docking of the various ligands on the OR1A1 homology model. Further molecular dynamics simulations revealed atomic details in the OR1A1 binding pocket.
对嗅觉受体(如OR1A1)的构效关系研究有助于加深对嗅觉感知分子机制的理解。这类受体被认为在调节嗅觉感知以外的生理作用方面很重要。在此,制备了一系列在氧官能团和末端叔丁基之间通过单乙炔、二乙炔或三乙炔间隔基连接的线性化酮、醇和一种环醚,以探究人类嗅觉受体OR1A1的反应。最佳激动剂是与芳基间隔基结合的单乙炔棒状化合物,包括单乙炔酮和,以及伯芳基 - 单乙炔醇和相应的仲醇。在后一种情况下,对()-对映体有明显的刺激偏好。各种配体在OR1A1同源模型上的分子对接支持了实验数据。进一步的分子动力学模拟揭示了OR1A1结合口袋中的原子细节。