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A pharmacological profile of the aldehyde receptor repertoire in rat olfactory epithelium

机译:大鼠嗅上皮中醛类受体库的药理学特征

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Several lines of evidence suggest that odorants are recognized through a combinatorial process in the olfactory system; a single odorant is recognized by multiple receptors and multiple odorants are recognized by the same receptor. However few details of how this might actually function for any particular odour set or receptor family are available. Approaching the problem from the ligands rather than the receptors, we used the response to a common odorant, octanal, as the basis for defining multiple receptor profiles. Octanal and other aldehydes induce large EOG responses in the rodent olfactory epithelium, suggesting that these compounds activate a large number of odour receptors (ORs). Here, we have determined and compared the pharmacological profile of different octanal receptors using Ca2+ imaging in isolated olfactory sensory neurones (OSNs). It is believed that each OSN expresses only one receptor, thus the response profile of each cell corresponds to the pharmacological profile of one particular receptor. We stimulated the cells with a panel of nine odorants, which included octanal, octanoic acid, octanol and cinnamaldehyde among others (all at 30μm). Cluster analysis revealed several distinct pharmacological profiles for cells that were all sensitive to octanal. Some receptors had a broad molecular range, while others were activated only by octanal. Comparison of the profiles with that of the one identified octanal receptor, OR-I7, indicated several differences. While OR-I7 is activated by low concentrations of octanal and blocked by citral, other receptors were less sensitive to octanal and not blocked by citral. A lower estimate for the maximal number of octanal receptors is between 33 and 55. This large number of receptors for octanal suggests that, although the peripheral olfactory system is endowed with high sensitivity, discrimination among different compounds probably requires further central processing.
机译:有几条证据表明,气味是通过嗅觉系统中的组合过程识别出来的。单个气味被多个受体识别,而多个气味被同一受体识别。但是,几乎没有任何细节可以说明这种气味如何真正作用于任何特定的气味组合或受体家族。从配体而不是受体来解决问题,我们使用对常见气味(辛烷)的响应作为定义多个受体特征的基础。辛醛和其他醛在啮齿动物的嗅觉上皮细胞中诱导大量的EOG反应,表明这些化合物激活了大量的气味受体(OR)。在这里,我们已经确定并比较了在分离的嗅觉感觉神经元(OSNs)中使用Ca 2 + 成像的不同骨受体的药理特性。据信每种OSN仅表达一种受体,因此每种细胞的应答特征对应于一种特定受体的药理特征。我们用一组九种气味刺激细胞,其中包括辛酸,辛酸,辛醇和肉桂醛(均为30μm)。聚类分析揭示了对八头肌都敏感的细胞的几种不同的药理学特征。一些受体具有广泛的分子范围,而另一些仅通过辛烷激活。与一种已鉴定的八角形受体OR-1的概况的比较表明了一些差异。尽管OR-I7被低浓度的辛烷激活并被柠檬醛阻断,但其他受体对辛烷的敏感性较低,而未被柠檬醛阻断。较低的估计最大的辛烷受体数量在33至55之间。大量的辛烷受体表明,尽管外周嗅觉系统具有很高的敏感性,但区分不同化合物可能需要进一步的中央处理。

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