Department of Chemistry, King's College London, SE1 1DB London, UK.
Phys Chem Chem Phys. 2019 Feb 6;21(6):2938-2945. doi: 10.1039/c8cp06970k.
New atomic-level experimental data on the intermolecular non-covalent interactions between a common odorant and a relevant residue at odorant binding sites are reported. The preferred arrangements and binding interactions of fenchone, a common odorant and ethanol, a mimic of serine's side chain, have been unambiguously identified using a combination of high resolution rotational spectroscopy and computational methods. The observed conformers include homochiral (RR) and heterochiral (RS) conformers, with a slight preference for a heterochiral form, and exhibit primary OH-O hydrogen bonds between fenchone and ethanol. Secondary interactions play a key role in determining the relative configurations of fenchone and ethanol, and in shaping quite a flat potential energy surface, with many conformers close in energy and small barriers for interconversion.
报道了一种常见气味剂与气味结合部位相关残基之间的分子间非共价相互作用的新原子级实验数据。使用高分辨率旋转光谱学和计算方法的组合,明确确定了常见气味剂葑酮和丝氨酸侧链类似物乙醇的优先排列和结合相互作用。观察到的构象包括同手性(RR)和异手性(RS)构象,略微偏向异手性形式,并且在葑酮和乙醇之间显示出主要的 OH-O 氢键。次级相互作用在确定葑酮和乙醇的相对构型以及形成相当平坦的势能表面方面起着关键作用,其中许多构象在能量上接近,相互转化的障碍很小。