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通过对人类嗅觉受体 OR8D1 对 sotolone 和 abhexone 的假定吸附过程研究嗅觉感知:统计物理建模和分子对接。

Investigation of olfactory perception by a putative adsorption process of sotolone and abhexone on human olfactory receptor OR8D1: Statistical physics modeling and molecular docking.

机构信息

Laboratory of Quantum and Statistical Physics LR 18 ES 18, Faculty of Sciences of Monastir, University of Monastir, Environment Street, 5019 Monastir, Tunisia.

Laboratory of Quantum and Statistical Physics LR 18 ES 18, Faculty of Sciences of Monastir, University of Monastir, Environment Street, 5019 Monastir, Tunisia.

出版信息

Int J Biol Macromol. 2024 Feb;259(Pt 2):129388. doi: 10.1016/j.ijbiomac.2024.129388. Epub 2024 Jan 11.

Abstract

In the present paper, a double layer advanced model was used to investigate the adsorption process putatively involved in the olfactory perception of sotolone and abhexone molecules on the human olfactory receptor OR8D1. The number of adsorbed molecules or the fraction of adsorbed molecule per site, n, informed that the two odorants molecules are docked on OR8D1 binding sites with mixed parallel and nonparallel anchorages. Furthermore, the estimated molar adsorption energy (-ΔE and -ΔE) were inferior to 40 kJ/mol for the two adsorption systems, which confirmed the physical nature and the exothermic character of the adsorption process. In addition, stereographic characterizations of the receptor sites surface were carried out through the determination of the receptor site size distribution (RSDs) via Kelvin equation, which spread out from 0.05 to 1.5 nm. The adsorption energy distributions (AEDs) via Polayni equation show an adsorption band spectrum localized between 17 kJ/mol and 22.5 kJ/mol for sotolone and abhexone molecules respectively. A molecular docking calculation was performed. The results indicate that the binding affinities are belonging to the spectrum of the energy band of the molecules sotolone and abhexone, with values 19.66 kJ/mol and 19.24 kJ/mol.

摘要

在本文中,使用双层先进模型研究了 sotolone 和 abhexone 分子在人嗅觉受体 OR8D1 上的嗅觉感知中可能涉及的吸附过程。吸附分子的数量或每个位点吸附分子的分数 n 表明,这两种气味分子以混合平行和非平行的固定方式与 OR8D1 结合位点结合。此外,对于两个吸附系统,估计的摩尔吸附能 (-ΔE 和 -ΔE) 低于 40 kJ/mol,这证实了吸附过程的物理性质和放热性质。此外,通过 Kelvin 方程确定受体位点大小分布 (RSD) 来进行受体位点表面的立体特征化,其分布范围从 0.05 到 1.5 nm。通过 Polayni 方程的吸附能分布 (AED) 分别显示 sotolone 和 abhexone 分子的吸附能带谱位于 17 kJ/mol 和 22.5 kJ/mol 之间。进行了分子对接计算。结果表明,结合亲和力属于 sotolone 和 abhexone 分子的能带谱,其值分别为 19.66 kJ/mol 和 19.24 kJ/mol。

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