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犬嗅觉受体基因一个子集的功能分析

Functional analysis of a subset of canine olfactory receptor genes.

作者信息

Benbernou Naima, Tacher Sandrine, Robin Stéphanie, Rakotomanga Michaelle, Senger Fabrice, Galibert Francis

机构信息

Laboratory of Genetic and Development, CNRS UMR 6061, Institut de Génétique et Développement de Rennes, Faculté de Médecine, Rennes, F-35043 France.

出版信息

J Hered. 2007;98(5):500-5. doi: 10.1093/jhered/esm054. Epub 2007 Jul 28.

Abstract

In this paper, we explored the level complexity of the combinatorial olfactory code that allows mammals with a repertoire of about thousand putatively active olfactory receptors encoded in their genomes to recognize and identify a much larger repertoire of odorant molecules. To that end, we cloned 38 canine OR genes belonging to the same OR gene family and transiently expressed them in a subclone of embryonic human kidney cells (HEK293) permanently expressing the G(olf) subunit. Using a Ca(2+) imaging approach, we established for example that as many as 26 out of the 38 cloned OR elicited a Ca(2+) response when exposed to octanal, whereas 10 responded to nonanal, other aldehydes providing intermediate responses. Altogether, these results demonstrated that the combinatorial code is quite complex in support to the highly developed sense of olfaction demonstrated by dogs.

摘要

在本文中,我们探究了组合嗅觉编码的层级复杂性,这种编码使基因组中编码有大约一千种假定活性嗅觉受体的哺乳动物能够识别和鉴定数量多得多的气味分子库。为此,我们克隆了属于同一嗅觉受体(OR)基因家族的38个犬类OR基因,并在永久表达G(olf)亚基的胚胎人肾细胞(HEK293)亚克隆中瞬时表达它们。例如,通过钙离子成像方法,我们确定在38个克隆的OR中,多达26个在暴露于辛醛时引发了钙离子反应,而10个对壬醛有反应,其他醛类则产生中间反应。总之,这些结果表明,组合编码相当复杂,这支持了狗所表现出的高度发达的嗅觉。

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