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嗅觉神经系统中的化学感应信号及其受体。

Chemosensory signals and their receptors in the olfactory neural system.

作者信息

Ihara S, Yoshikawa K, Touhara K

机构信息

Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo 113-8657, Japan; ERATO Touhara Chemosensory Signal Project, JST, The University of Tokyo, Tokyo 113-8657, Japan.

出版信息

Neuroscience. 2013 Dec 19;254:45-60. doi: 10.1016/j.neuroscience.2013.08.063. Epub 2013 Sep 14.

Abstract

Chemical communication is widely used among various organisms to obtain essential information from their environment required for life. Although a large variety of molecules have been shown to act as chemical cues, the molecular and neural basis underlying the behaviors elicited by these molecules has been revealed for only a limited number of molecules. Here, we review the current knowledge regarding the signaling molecules whose flow from receptor to specific behavior has been characterized. Discussing the molecules utilized by mice, insects, and the worm, we focus on how each organism has optimized its reception system to suit its living style. We also highlight how the production of these signaling molecules is regulated, an area in which considerable progress has been recently made.

摘要

化学通讯在各种生物体中广泛使用,以从其生存环境中获取生命所需的基本信息。尽管已证明多种分子可作为化学信号,但只有少数分子的这些分子引发行为的分子和神经基础得以揭示。在此,我们综述了关于其从受体到特定行为的信号传导已得到表征的信号分子的现有知识。在讨论小鼠、昆虫和蠕虫所利用的分子时,我们重点关注每种生物体如何优化其接收系统以适应其生活方式。我们还强调了这些信号分子的产生是如何被调控的,这是一个最近已取得相当大进展的领域。

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