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Trafficking of Mammalian ChemosensoryReceptors by Receptor-transporting Proteins

机译:通过受体输送蛋白贩运哺乳动物化学血清患者

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Although mammalian odorant receptors (ORs) were identified more than 15 years ago, we still do not understand how odorant molecules interact with ORs at a molecular level. Previous studies of mammalian ORs have tested few ORs against many odorants. Some fundamental properties of the olfactory system, however, require investigation of a wide panel of diverse ORs with many chemically diverse odorants. Previously, we identified OR accessory proteins, receptor-transporting protein (RTP) 1 and RTP2. They are expressed specifically in olfactory neurons, are associated with OR proteins, and facilitate the OR trafficking to the plasma membrane when coexpressed in mammalian cell lines. With this approach, high-throughput screening using a large repertoire of mammalian ORs is now possible. The activation profiles can be used to develop a predictive model relating physicochemical odorant properties, receptor sequences, and their interactions, enabling us to predict a tested receptor's response to a novel odorant and a novel receptor's response to a tested odorant. Doing so will provide a basis for understanding how structurally diverse odorant molecules activate the mammalian OR repertoire. Similarly, two families of vomeronasal receptors, V1Rs and V2Rs, are also notoriously difficult to functionally express in heterologous cells. However, coexpression of the RTP family members with V1Rs or V2Rs does not seem to facilitate trafficking of the receptor proteins. This finding suggests that the vomeronasal organ has a unique biosynthetic pathway for membrane proteins.
机译:虽然哺乳动物的臭臭受体(或)在15年前鉴定,但我们仍然不明白气味分子如何在分子水平下与或者相互作用。以前对哺乳动物或者的研究已经过少量或抵抗许多气味。然而,嗅觉系统的一些基本属性需要调查宽阔的多样化或具有许多化学多样化的气味。以前,我们鉴定或辅助蛋白质,受体转运蛋白(RTP)1和RTP2。它们在嗅神经元中特别地表达,与哺乳动物细胞系中的共表达时,促进或贩运血浆膜。利用这种方法,现在可以使用大量哺乳动物或者哺乳动物的高吞吐量筛选。激活曲线可用于开发有关物理化学气味性质,受体序列及其相互作用的预测模型,使我们能够预测测试受体对新型气味剂的反应和新的受体对测试气味的反应。这样做将为理解结构性不同的气味分子如何激活哺乳动物或曲目来提供基础。类似地,两个含有的葡聚物受体,V1R和V2RS的家族也难以在异源细胞中表达难以在异源细胞中表达。然而,RTP家庭成员与V1Rs或V2Rs的共表达似乎并不便利贩运的受体蛋白质。该发现表明,葡聚物器官具有独特的膜蛋白的生物合成途径。

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