Department of Pharmacology, School of Medicine, School of Public Health, University of Washington, Seattle, Washington 98195-7750, USA.
J Neurosci. 2012 Nov 7;32(45):15769-78. doi: 10.1523/JNEUROSCI.2180-12.2012.
Cilia of olfactory sensory neurons are the primary sensory organelles for olfaction. The detection of odorants by the main olfactory epithelium (MOE) depends on coupling of odorant receptors to the type 3 adenylyl cyclase (AC3) in olfactory cilia. We monitored the effect of airflow on electro-olfactogram (EOG) responses and found that the MOE of mice can sense mechanical forces generated by airflow. The airflow-sensitive EOG response in the MOE was attenuated when cAMP was increased by odorants or by forskolin suggesting a common mechanism for airflow and odorant detection. In addition, the sensitivity to airflow was significantly impaired in the MOE from AC3(-/-) mice. We conclude that AC3 in the MOE is required for detecting the mechanical force of airflow, which in turn may regulate odorant perception during sniffing.
嗅感觉神经元的纤毛是嗅觉的主要感觉器官。主要嗅觉上皮 (MOE) 通过气味受体与嗅觉纤毛中的第三型腺苷酸环化酶 (AC3) 的偶联来检测气味。我们监测了气流对电嗅觉图 (EOG) 反应的影响,发现小鼠的 MOE 可以感知气流产生的机械力。当气味或 forskolin增加 cAMP 时,MOE 中对气流敏感的 EOG 反应会减弱,这表明气流和气味检测存在共同的机制。此外,在 AC3(-/-) 小鼠的 MOE 中,气流的敏感性显著受损。我们得出结论,MOE 中的 AC3 用于检测气流的机械力,而气流的机械力又可能在嗅探过程中调节气味的感知。