气味受体的识别。

H Breer, K Raming, J Krieger, I Boekhoff, J Strotmann
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引用次数: 3

摘要

嗅觉分子的分子性质和接受位点的多样性是嗅觉领域一个悬而未决的核心问题。基于嗅觉系统的巨大分辨能力,可以在低浓度下对许多化合物进行立体特异性识别,已经提出了特异性受体蛋白。由于g蛋白在嗅觉信号传导中的核心作用,人们预测气味受体可能是具有7个跨膜结构域的受体蛋白超家族的成员。应用退化寡核苷酸和聚合酶链反应技术,已经克隆和测序了许多假定的气味受体。使用受体特异性探针进行了原位杂交研究,并在大鼠鼻上皮中特异性表达特定受体亚型的嗅觉神经元进行了拓扑鉴定。感兴趣的克隆现在正在异种系统中表达,以证明这些假定的受体蛋白的功能活性,并将确定的气味剂与已识别的受体相匹配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards an identification of odorant receptors.
The molecular nature and diversity of receptive sites for odorous molecules is a central unanswered issue in olfaction. Based on the enormous resolving power of the olfactory system, which enables the stereospecific discrimination of numerous compounds at low concentrations specific receptor proteins have been proposed. Due to the central role of G-proteins in olfactory signalling it has been predicted that odorant receptors might be members of the superfamily of receptor proteins with seven transmembrane domains. Upon application of degenerated oligonucleotides and the PCR-technology a number of putative odorant receptors have been cloned and sequenced. In situ hybridisation studies using receptor-specific probes have been performed and olfactory neurons specifically expressing a particular receptor subtype are topologically identified in the nasal epithelium of rats. Clones of interest are now being expressed in heterologous systems in order to demonstrate functional activity of these putative receptor proteins and to match defined odorants to identified receptors.
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