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果蝇触角中气味编码的分子基础。

The molecular basis of odor coding in the Drosophila antenna.

作者信息

Hallem Elissa A, Ho Michael G, Carlson John R

机构信息

Department of Molecular, Cellular, and Developmental Biology, Yale University, New Haven, Connecticut 06520, USA.

出版信息

Cell. 2004 Jun 25;117(7):965-79. doi: 10.1016/j.cell.2004.05.012.


DOI:10.1016/j.cell.2004.05.012
PMID:15210116
Abstract

We have undertaken a functional analysis of the odorant receptor repertoire in the Drosophila antenna. Each receptor was expressed in a mutant olfactory receptor neuron (ORN) used as a "decoder," and the odor response spectrum conferred by the receptor was determined in vivo by electrophysiological recordings. The spectra of these receptors were then matched to those of defined ORNs to establish a receptor-to-neuron map. In addition to the odor response spectrum, the receptors dictate the signaling mode, i.e., excitation or inhibition, and the response dynamics of the neuron. An individual receptor can mediate both excitatory and inhibitory responses to different odorants in the same cell, suggesting a model of odorant receptor transduction. Receptors vary widely in their breadth of tuning, and odorants vary widely in the number of receptors they activate. Together, these properties provide a molecular basis for odor coding by the receptor repertoire of an olfactory organ.

摘要

我们对果蝇触角中的气味受体库进行了功能分析。每个受体都在用作“解码器”的突变嗅觉受体神经元(ORN)中表达,并且通过电生理记录在体内确定该受体赋予的气味反应谱。然后将这些受体的谱与特定ORN的谱进行匹配,以建立受体与神经元的图谱。除了气味反应谱外,这些受体还决定了信号传导模式,即兴奋或抑制,以及神经元的反应动力学。单个受体可以在同一细胞中介导对不同气味剂的兴奋性和抑制性反应,这提示了一种气味受体转导模型。受体在其调谐广度上差异很大,而气味剂在它们激活的受体数量上差异也很大。这些特性共同为嗅觉器官的受体库进行气味编码提供了分子基础。

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