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PNAS Plus: Molecular mechanism of activation of human musk receptors OR5AN1 and OR1A1 by (R)-muscone and diverse other musk-smelling compounds

机译:PNAS Plus:(R)-muscone和其他多种麝香气味化合物激活人麝香受体OR5AN1和OR1A1的分子机制

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摘要

Understanding olfaction at the molecular level is challenging due to the lack of crystallographic models of odorant receptors (ORs). To better understand the molecular mechanism of OR activation, we focused on chiral (R)-muscone and other musk-smelling odorants due to their great importance and widespread use in perfumery and traditional medicine, as well as environmental concerns associated with bioaccumulation of musks with estrogenic/antiestrogenic properties. We experimentally and computationally examined the activation of human receptors OR5AN1 and OR1A1, recently identified as specifically responding to musk compounds. OR5AN1 responds at nanomolar concentrations to musk ketone and robustly to macrocyclic sulfoxides and fluorine-substituted macrocyclic ketones; OR1A1 responds only to nitromusks. Structural models of OR5AN1 and OR1A1 based on quantum mechanics/molecular mechanics (QM/MM) hybrid methods were validated through direct comparisons with activation profiles from site-directed mutagenesis experiments and analysis of binding energies for 35 musk-related odorants. The experimentally found chiral selectivity of OR5AN1 to (R)- over (S)-muscone was also computationally confirmed for muscone and fluorinated (R)-muscone analogs. Structural models show that OR5AN1, highly responsive to nitromusks over macrocyclic musks, stabilizes odorants by hydrogen bonding to Tyr260 of transmembrane α-helix 6 and hydrophobic interactions with surrounding aromatic residues Phe105, Phe194, and Phe207. The binding of OR1A1 to nitromusks is stabilized by hydrogen bonding to Tyr258 along with hydrophobic interactions with surrounding aromatic residues Tyr251 and Phe206. Hydrophobiconpolar and hydrogen bonding interactions contribute, respectively, 77% and 13% to the odorant binding affinities, as shown by an atom-based quantitative structure–activity relationship model.
机译:由于缺乏气味受体(OR)的晶体学模型,因此在分子水平上了解嗅觉具有挑战性。为了更好地了解OR激活的分子机制,我们将重点放在手性(R)-麝香酮和其他麝香气味的增香剂上,因为它们在香水和传统药物中具有很高的重要性和广泛使用,以及与麝香的生物积累相关的环境问题。雌激素/抗雌激素特性。我们通过实验和计算方法研究了人类受体OR5AN1和OR1A1的激活,这些受体最近被鉴定为对麝香化合物有特异反应。 OR5AN1在纳摩尔浓度下对麝香酮有反应,对大环亚砜和氟取代的大环酮有较强的反应能力; OR1A1仅对硝基麝香作出反应。通过与定点诱变实验的活化曲线直接比较并分析35种与麝香有关的气味的结合能,对基于量子力学/分子力学(QM / MM)混合方法的OR5AN1和OR1A1的结构模型进行了验证。还通过计算证实了对麝香酮和氟化的(R)-麝香酮类似物的实验发现的OR5AN1对(R)-(S)-麝香酮的手性选择性。结构模型显示,OR5AN1对硝基麝香对大环麝香具有高响应性,它通过与跨膜α-螺旋6的Tyr260氢键键合以及与周围芳香残基Phe105,Phe194和Phe207疏水相互作用来稳定气味。 OR1A1与硝基麝香的结合通过与Tyr258的氢键结合以及与周围芳香残基Tyr251和Phe206的疏水相互作用而得以稳定。如基于原子的定量结构-活性关系模型所示,疏水/非极性和氢键相互作用分别贡献了77%和13%的气味结合亲和力。

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