RIKEN Brain Science Institute, Saitama 351-0198, Japan.
J Neurosci. 2013 Aug 7;33(32):12987-96, 12996a. doi: 10.1523/JNEUROSCI.4948-12.2013.
The basic scheme of odor perception and signaling from olfactory cilia to the brain is well understood. However, factors that affect olfactory acuity of an animal, the threshold sensitivity to odorants, are less well studied. Using signal sequence trap screening of a mouse olfactory epithelium cDNA library, we identified a novel molecule, Goofy, that is essential for olfactory acuity in mice. Goofy encodes an integral membrane protein with specific expression in the olfactory and vomeronasal sensory neurons and predominant localization to the Golgi compartment. Goofy-deficient mice display aberrant olfactory phenotypes, including the impaired trafficking of adenylyl cyclase III, stunted olfactory cilia, and a higher threshold for physiological and behavioral responses to odorants. In addition, the expression of dominant-negative form of cAMP-dependent protein kinase results in shortening of olfactory cilia, implying a possible mechanistic link between cAMP and ciliogenesis in the olfactory sensory neurons. These results demonstrate that Goofy plays an important role in establishing the acuity of olfactory sensory signaling.
嗅觉感知和从嗅纤毛到大脑的信号转导的基本机制已经得到很好的理解。然而,影响动物嗅觉敏锐度(对气味分子的阈值敏感性)的因素研究得还不够充分。我们通过对小鼠嗅上皮 cDNA 文库的信号序列捕获筛选,鉴定了一个新的分子 Goofy,它对小鼠的嗅觉敏锐度是必需的。Goofy 编码一种整合膜蛋白,在嗅觉和犁鼻器感觉神经元中有特异性表达,主要定位于高尔基体区室。Goofy 缺陷小鼠表现出异常的嗅觉表型,包括腺苷酸环化酶 III 的运输受损、嗅觉纤毛短小以及对气味分子的生理和行为反应的阈值升高。此外,cAMP 依赖性蛋白激酶的显性负形式的表达导致嗅觉纤毛缩短,这表明在嗅觉感觉神经元中 cAMP 和纤毛发生之间可能存在一种机制联系。这些结果表明,Goofy 在建立嗅觉感觉信号转导的敏锐度方面发挥着重要作用。