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Firmenich SA, 7 Rue de la Bergère, Satigny 1242, Switzerland.
Curr Biol. 2023 Apr 24;33(8):1523-1534.e4. doi: 10.1016/j.cub.2023.03.016. Epub 2023 Mar 27.
Odor perception is first determined by how the myriad of environmental volatiles are detected at the periphery of the olfactory system. The combinatorial activation of dedicated odorant receptors generates enough encoding power for the discrimination of tens of thousands of odorants. Recent studies have revealed that odorant receptors undergo widespread inhibitory modulation of their activity when presented with mixtures of odorants, a property likely required to maintain discrimination and ensure sparsity of the code for complex mixtures. Here, we establish the role of human OR5AN1 in the detection of musks and identify distinct odorants capable of enhancing its activity in binary mixtures. Chemical and pharmacological characterization indicate that specific α-β unsaturated aliphatic aldehydes act as positive allosteric modulators. Sensory experiments show decreased odor detection threshold in humans, suggesting that allosteric modulation of odorant receptors is perceptually relevant and likely adds another layer of complexity to how odors are encoded in the peripheral olfactory system.
气味感知首先取决于嗅觉系统外围对无数环境挥发物的检测方式。特定气味受体的组合激活为区分成千上万种气味提供了足够的编码能力。最近的研究表明,当呈现混合物时,气味受体的活性会受到广泛的抑制性调节,这种特性可能是维持辨别能力和确保复杂混合物代码稀疏所必需的。在这里,我们确定了人类 OR5AN1 在麝香检测中的作用,并确定了能够增强其在二元混合物中活性的独特气味。化学和药理学特征表明,特定的α-β不饱和脂肪族醛作为正变构调节剂起作用。感觉实验表明,人类的气味检测阈值降低,这表明气味受体的变构调节在感知上是相关的,并且可能为外周嗅觉系统如何编码气味增加了另一层复杂性。