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Cloning, functional expression and characterization of a human olfactory receptor.

机译:人嗅觉受体的克隆,功能表达和表征。

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The human olfactory system can recognize and discriminate a large number of different odorant molecules. The detection of chemically distinct odorants begins with the binding of an odorant ligand to a specific receptor protein on the olfactory neuron cell surface. To address the problem of olfactory perception at a molecular level, we have cloned, functionally expressed and characterized the first human olfactory receptor (OR 17-40). Application of a mixture of hundred different odorants elicited a transient increase in intracellular calcium at HEK 293-cells which were transfected with a plasmid containing the receptor encoding DNA and a membrane import sequence. By subdividing the odorant mixture in smaller groups we could identify a single component which represented the only effective substance: helional. Testing some structurally closely related molecules we found only one other compound which also could activate the receptor: heliotropyl acetone. All other compounds tested were completely ineffective. These findings represent the beginning of molecular understanding of odorant recognition in humans.
机译:人的嗅觉系统可以识别和区分大量不同的气味分子。化学上不同气味的检测始于气味配体与嗅觉神经元细胞表面特定受体蛋白的结合。为了在分子水平上解决嗅觉感知的问题,我们已经克隆,功能表达并表征了第一个人类嗅觉受体(OR 17-40)。施加一百种不同的气味混合物会引起HEK 293细胞内细胞内钙的瞬时增加,然后用含有编码DNA和膜导入序列的受体的质粒转染HEK 293细胞。通过将气味混合物细分为较小的组,我们可以识别出代表唯一有效物质的单个成分:螺旋形。测试一些与结构密切相关的分子时,我们只发现了一种也可以激活受体的化合物:巯基丙酮。测试的所有其他化合物完全无效。这些发现代表了对人类气味识别的分子理解的开始。

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