Interdisciplinary Program of Bioengineering, Seoul National University, Seoul 151-742, Republic of Korea.
School of Chemical and Biological Engineering, Seoul National University, Seoul 151-742, Republic of Korea.
Acta Biomater. 2015 Aug;22:1-7. doi: 10.1016/j.actbio.2015.04.034. Epub 2015 Apr 27.
In the human smell sensing system, there are about 390 kinds of olfactory receptors (ORs) which bind to various odorants with different affinities and specificities. Characterization and odorant binding pattern analysis of the ORs are essential for understanding of human olfaction and to mimic the olfactory system in various applications. Although various cell-based odorant screening systems have been developed for this purpose, many human ORs (hORs) still remain orphan because of the time-consuming and labor-intensive experimental procedures of the available screening methods. In this study, we constructed an ion channel-coupled hOR for simple odorant detection by rapidly visualizing the odorant response to overcome the limitations of conventional screening systems. The hORs were coupled to the Kir6.2 potassium channel and the fusion proteins were expressed in HEK293 cells. In this system, when an odorant binds to the hORs coupled to the ion channel, a conformational change in the OR occurs, which consequently opens the ion channel to result in ion influx into the cell. This ion influx was then visualized using a membrane potential dye. Cells expressing ion channel-coupled hORs showed high sensitivity and selectivity to their specific odorants, and the odorant-hOR binding pattern was visualized to identify the response of individual hORs to various odorants, as well as the response of various hORs to various odorants. These results indicate that the ion channel-coupled hOR system can be effectively used not only for simple and fast high-throughput odorant screening, but also to visualize the odorant-hOR response pattern.
在人类嗅觉感知系统中,大约有 390 种嗅觉受体(ORs),它们与各种具有不同亲和力和特异性的气味结合。对 ORs 的特征描述和气味结合模式分析对于理解人类嗅觉以及在各种应用中模拟嗅觉系统至关重要。尽管已经开发了各种基于细胞的气味筛选系统来实现这一目标,但由于现有筛选方法的实验程序耗时且费力,许多人类 ORs(hORs)仍然是孤儿。在这项研究中,我们构建了一种离子通道偶联的 hOR,用于简单的气味检测,通过快速可视化气味反应来克服传统筛选系统的局限性。hORs 与 Kir6.2 钾通道偶联,融合蛋白在 HEK293 细胞中表达。在该系统中,当气味与离子通道偶联的 hOR 结合时,OR 会发生构象变化,从而打开离子通道,导致离子内流入细胞。然后使用膜电位染料可视化该离子内流。表达离子通道偶联 hOR 的细胞对其特定气味表现出高灵敏度和选择性,并且可以可视化气味-hOR 结合模式,以识别单个 hOR 对各种气味的反应,以及各种 hOR 对各种气味的反应。这些结果表明,离子通道偶联 hOR 系统不仅可以有效地用于简单快速的高通量气味筛选,还可以可视化气味-hOR 反应模式。