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Ligand-selective activation of heterologously-expressed mammalian olfactory receptor

机译:异源表达的哺乳动物嗅觉受体的配体选择性激活

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摘要

Mammalian olfactory receptors (ORs) appear to have the capacity to couple to multiple G protein-coupled signaling pathways in a ligand-dependent selective manner. To better understand the mechanisms and molecular range of such ligand selectivity, we expressed the mouse eugenol OR (mOR-EG) in HEK293T cells together with Gα15 to monitor activation of the phospholipase-C (PLC) signaling pathway and/or Gαolf to monitor activation of the adenylate cyclase (AC) signaling pathway, resulting in intracellular Ca2+ release and/or Ca2+ influx through a cyclic nucleotide-gated channel, respectively. PLC-dependent responses differed dynamically from AC-dependent responses, allowing them to be distinguished when Gα15 and Gαolf were co-expressed. The dynamic difference in readout was independent of the receptor, the heterologous expression system, and the ligand concentration. Of 17 reported mOR-EG ligands tested, including eugenol, its analogs, and structurally dissimilar compounds (mousse cristal, nootkatone, orivone), some equally activated both signaling pathways, some differentially activated both signaling pathways, and some had no noticeable effect even at 1-5 mM. Our findings argue that mOR-EG, when heterologously expressed, can couple to two different signaling pathways in a ligand selective manner. The challenge now is to determine the potential of mOR-EG, and perhaps other ORs, to activate multiple signaling pathways in a ligand selective manner in native ORNs.
机译:哺乳动物嗅觉受体(OR)似乎具有以配体依赖性选择性方式与多个G蛋白偶联的信号传导途径偶联的能力。为了更好地了解这种配体选择性的机制和分子范围,我们在HEK293T细胞中与Gα15一起表达了小鼠丁子香酚OR(mOR-EG),以监测磷脂酶-C(PLC)信号通路的激活和/或Gαolf来监测激活腺苷酸环化酶(AC)信号通路的信号传导,分别导致细胞内Ca 2 + 释放和/或Ca 2 + 通过环状核苷酸门控通道流入。 PLC依赖的响应与AC依赖的响应动态不同,因此可以在共表达Gα15和Gαolf时区分它们。读出的动态差异与受体,异源表达系统和配体浓度无关。在测试的17种已报告的mOR-EG配体中,包括丁子香酚,其类似物和结构上不同的化合物(慕斯克里斯塔,Nootkatone,Orivone),一些均激活了两个信号通路,有些激活了两个信号通路,甚至在1-5毫米我们的发现认为,mOR-EG异源表达时,可以以配体选择性方式偶联至两个不同的信号传导途径。现在的挑战是确定天然ORN中mOR-EG和其他OR可能以配体选择性方式激活多个信号传导途径的潜力。

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