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Odorant-Specific Modes of Signaling in Mammalian Olfaction

机译:哺乳动物嗅觉中特定于气味的信号传导模式

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Odors play an important role in our quality of life and well being, a role that is compromised by the effect of disease, drugs, aging, and environmental onslaught on the olfactory epithelium (OE). Olfactory receptor neurons (ORNs) in OE provide the primary input to the olfactory system, such that disruption of the cellular processes leading to the activation of the ORNs inevitably compromises olfactory function. The organization of the olfactory periphery in mammals is emerging to be more complex than originally thought. An often underappreciated aspect of that complexity is that odorants have 2 odorant-specific modes of signaling, that is, they inhibit as well as excite the ORNs. The ubiquity of this phenomenon across diverse animal species suggests that having opponent input into the olfactory system is fundamental to how olfaction works, yet in contrast to our canonical understanding of how odorants excite mammalian ORNs, our understanding of how odorants inhibit these cells is still unclear. Odorants potentially can inhibit ORNs through multiple not necessarily mutually exclusive mechanisms but compelling new data argue that phosphoinositide (PI) signaling at least in part mediates inhibitory odorant input to mammalian ORNs. The idea that inhibitory input is mediated through a distinct input pathway argues for the fundamental importance of inhibitory input to olfactory coding in mammals and identifies an additional possible cellular basis for olfactory dysfunction.
机译:气味在我们的生活质量和健康中起着重要作用,而疾病,药物,衰老和环境对嗅觉上皮细胞(OE)的影响会破坏气味的作用。 OE中的嗅觉受体神经元(ORN)为嗅觉系统提供了主要输入,因此导致ORN激活的细胞过程破坏不可避免地损害了嗅觉功能。哺乳动物的嗅觉周围组织正变得比最初所想的更为复杂。这种复杂性的一个经常被低估的方面是,气味剂具有两种特定于气味剂的信号传导模式,也就是说,它们既抑制又激发了ORN。这种现象在不同动物物种中的普遍存在表明,嗅觉系统的对手输入是嗅觉工作原理的基础,但是与我们对加味剂如何激发哺乳动物ORN的规范理解相反,我们对加味剂如何抑制这些细胞的理解仍不清楚。气味可能通过多种不一定相互排斥的机制抑制ORN,但令人信服的新数据表明,磷酸肌醇(PI)信号至少部分介导了抑制性气味输入到哺乳动物ORN。抑制性输入是通过独特的输入途径介导的想法,证明了抑制性输入对哺乳动物嗅觉编码的根本重要性,并确定了嗅觉功能障碍的其他可能的细胞基础。

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