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首页> 外文期刊>The European Journal of Neuroscience >Highly specific responses to amine odorants of individual olfactory receptor neurons in situ.
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Highly specific responses to amine odorants of individual olfactory receptor neurons in situ.

机译:对单个嗅觉受体神经元的胺类气味的高度特异性反应。

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摘要

The main olfactory system of larval Xenopus laevis is made up of at least two subsystems consisting of subsets of olfactory receptor neurons (ORNs) with different transduction mechanisms. One ORN subset lacks the canonical cAMP transduction pathway and responds to amino acid odorants. The second subset has the cAMP transduction pathway but as yet suitable odorants are unknown. Here we report the identification of amines as proper olfactory stimuli for larval X. laevis using functional Ca(2+) imaging and slice preparations of the olfactory system. The response profiles of individual ORNs to a number of amines were extremely complex and mostly highly specific. The great majority of amine-sensitive ORNs responded also to forskolin, an activator of the olfactory cAMP transduction pathway. Most amine-induced responses could be attenuated by the cyclic nucleotide-gated channel inhibitor LY83583. This confirms that most amine-responsive olfactory receptors (ORs) are coupled to the cAMP-dependent transduction pathway. Furthermore, we show that trace amine-associated receptors (TAARs), which have been shown to act as specific ORs for amines in mammals, are expressed in the olfactory organ of X. laevis. The TAARs expressed in Xenopus cannot, however, explain the complex responses of individual ORNs to amines because there are too few of them. This indicates that, in addition to TAARs, there must be other receptor families involved in the detection of amines.
机译:幼年爪蟾的主要嗅觉系统由至少两个子系统组成,这些子系统由具有不同转导机制的嗅觉受体神经元(ORN)子集组成。一个ORN子集缺少典型的cAMP传导途径,对氨基酸气味剂有反应。第二个子集具有cAMP转导途径,但尚无合适的加香剂。在这里,我们报告使用功能性Ca(2+)成像和嗅觉系统的切片准备工作,确定胺作为幼虫X. laevis的适当嗅觉刺激物。各个ORN对多种胺的响应曲线非常复杂,而且大多具有高度特异性。绝大多数对胺敏感的ORN也对嗅觉cAMP传导途径的激活剂福斯高林产生反应。多数胺诱导的反应可以被环状核苷酸门控通道抑制剂LY83583减弱。这证实了大多数胺反应性嗅觉受体(OR)与cAMP依赖性转导途径偶联。此外,我们显示痕量的胺相关受体(TAARs),已被证明在哺乳动物中充当胺的特异性OR,在X.laevis的嗅觉器官中表达。然而,非洲爪蟾中表达的TAAR不能解释单个ORN对胺的复杂反应,因为它们太少了。这表明,除了TAAR外,还必须有其他受体家族参与胺的检测。

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