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大鼠嗅球中气味分子特征的拓扑表征。

Topographic representation of odorant molecular features in the rat olfactory bulb.

作者信息

Takahashi Yuji K, Kurosaki Masahide, Hirono Shuichi, Mori Kensaku

机构信息

Department of Physiology, Graduate School of Medicine, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan (E-mail;

出版信息

J Neurophysiol. 2004 Oct;92(4):2413-27. doi: 10.1152/jn.00236.2004. Epub 2004 May 19.

Abstract

Individual glomeruli in the mammalian olfactory bulb (OB) most probably represent a single odorant receptor (OR). The assembly of glomeruli thus forms the maps of ORs. How is the approximately 1,000 ORs represented spatially in the glomerular map? Using the method of optical imaging of intrinsic signals and systematic panels of stimulus odorants, we recorded odorant-induced glomerular activity from the dorsal and dorsolateral areas of the rat OB, and examined the molecular receptive range (MRR) of individual glomeruli. We then deduced the characteristic molecular features that were shared by odorants effective in activating individual glomeruli. Analysis of the spatial representation of the MRR showed that glomeruli with similar MRRs gathered in close proximity and formed molecular feature clusters and subclusters. Although the shape of the clusters varied among different OBs, the clusters were arranged at stereotypical positions in relation to the zonal organization of the OB. Examination of the spatial representation of the characteristic molecular features of odorants using structurally semirigid aromatic compounds suggest a systematic and gradual change in the characteristic molecular features according to the position of subclusters in the map. The topographic map of the characteristic molecular features may reflect a systematic spatial representation of the ORs and may participate in the neural bases for the odorant structure-odor quality relationship.

摘要

哺乳动物嗅球(OB)中的单个肾小球很可能代表一种单一的气味受体(OR)。因此,肾小球的组装形成了OR图谱。大约1000种OR在肾小球图谱中是如何在空间上表示的呢?我们使用内在信号光学成像方法和系统的刺激气味剂面板,记录了大鼠OB背侧和背外侧区域气味剂诱导的肾小球活动,并检查了单个肾小球的分子感受范围(MRR)。然后,我们推断出有效激活单个肾小球的气味剂所共有的特征分子特征。对MRR空间表示的分析表明,具有相似MRR的肾小球聚集在附近,形成分子特征簇和亚簇。尽管不同OB中簇的形状有所不同,但这些簇相对于OB的区域组织以刻板的位置排列。使用结构半刚性芳香化合物对气味剂特征分子特征的空间表示进行检查,表明特征分子特征根据图谱中亚簇的位置有系统地逐渐变化。特征分子特征的地形图可能反映了OR的系统空间表示,并可能参与气味剂结构-气味质量关系的神经基础。

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