Molecular Medicine Lab RCSI, Beaumont Hospital, Dublin, Republic of Ireland.
FEBS J. 2009 Dec;276(24):7279-90. doi: 10.1111/j.1742-4658.2009.07435.x.
The unique ability of mammals to detect and discriminate between thousands of different odorant molecules is governed by the diverse array of olfactory receptors expressed by olfactory sensory neurons in the nasal epithelium. Olfactory receptors consist of seven transmembrane domain G protein-coupled receptors and comprise the largest gene superfamily in the mammalian genome. We found that approximately 30% of olfactory receptors possess a classical post-synaptic density 95, Drosophila discs large, zona-occludens 1 (PDZ) domain binding motif in their C-termini. PDZ domains have been established as sites for protein-protein interaction and play a central role in organizing diverse cell signaling assemblies. In the present study, we show that multi-PDZ domain protein 1 (MUPP1) is expressed in the apical compartment of olfactory sensory neurons. Furthermore, on heterologous co-expression with olfactory sensory neurons, MUPP1 was shown to translocate to the plasma membrane. We found direct interaction of PDZ domains 1 + 2 of MUPP1 with the C-terminus of olfactory receptors in vitro. Moreover, the odorant-elicited calcium response of OR2AG1 showed a prolonged decay in MUPP1 small interfering RNA-treated cells. We have therefore elucidated the first building blocks of the putative 'olfactosome', brought together by the scaffolding protein MUPP1, a possible central nucleator of the olfactory response.
哺乳动物独特的嗅觉能力能够识别和区分成千上万种不同的气味分子,这是由鼻腔上皮嗅觉感觉神经元表达的多样化嗅觉受体所决定的。嗅觉受体由七个跨膜结构域的 G 蛋白偶联受体组成,是哺乳动物基因组中最大的基因超家族。我们发现,大约 30%的嗅觉受体在其 C 末端具有经典的突触后密度 95、果蝇盘状结构域大、区室封闭 1(PDZ)结构域结合基序。PDZ 结构域已被确定为蛋白质-蛋白质相互作用的位点,并在组织多种细胞信号转导组装中发挥核心作用。在本研究中,我们表明多 PDZ 结构域蛋白 1(MUPP1)在嗅觉感觉神经元的顶部分支表达。此外,在与嗅觉感觉神经元的异源共表达中,MUPP1被证明向质膜移位。我们发现 MUPP1 的 PDZ 结构域 1+2 与嗅觉受体的 C 末端在体外直接相互作用。此外,在 MUPP1 小干扰 RNA 处理的细胞中,OR2AG1 的气味诱发钙反应的衰减时间延长。因此,我们阐明了假定的“嗅小体”的第一个构建块,该构建块由支架蛋白 MUPP1 聚集在一起,MUPP1 可能是嗅觉反应的核心核心。