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三聚体 G 蛋白亚基 Gγ13 对嗅觉至关重要。

Heterotrimeric G protein subunit Gγ13 is critical to olfaction.

机构信息

Monell Chemical Senses Center, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Neurosci. 2013 May 1;33(18):7975-84. doi: 10.1523/JNEUROSCI.5563-12.2013.

DOI:10.1523/JNEUROSCI.5563-12.2013
PMID:23637188
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3678349/
Abstract

The activation of G-protein-coupled olfactory receptors on the olfactory sensory neurons (OSNs) triggers a signaling cascade, which is mediated by a heterotrimeric G-protein consisting of α, β, and γ subunits. Although its α subunit, Gαolf, has been identified and well characterized, the identities of its β and γ subunits and their function in olfactory signal transduction, however, have not been well established yet. We, and others, have found the expression of Gγ13 in the olfactory epithelium, particularly in the cilia of the OSNs. In this study, we generated a conditional gene knock-out mouse line to specifically nullify Gγ13 expression in the olfactory marker protein-expressing OSNs. Immunohistochemical and Western blot results showed that Gγ13 subunit was indeed eliminated in the mutant mice's olfactory epithelium. Intriguingly, Gαolf, β1 subunits, Ric-8B and CEP290 proteins, were also absent in the epithelium whereas the presence of the effector enzyme adenylyl cyclase III remained largely unaltered. Electro-olfactogram studies showed that the mutant animals had greatly reduced responses to a battery of odorants including three presumable pheromones. Behavioral tests indicated that the mutant mice had a remarkably reduced ability to perform an odor-guided search task although their motivation and agility seemed normal. Our results indicate that Gαolf exclusively forms a functional heterotrimeric G-protein with Gβ1 and Gγ13 in OSNs, mediating olfactory signal transduction. The identification of the olfactory G-protein's βγ moiety has provided a novel approach to understanding the feedback regulation of olfactory signal transduction pathways as well as the control of subcellular structures of OSNs.

摘要

嗅觉感觉神经元(OSN)上 G 蛋白偶联嗅觉受体的激活触发了信号级联反应,该反应由由α、β和γ亚基组成的异三聚体 G 蛋白介导。虽然其α亚基 Gαolf 已被鉴定并得到很好的表征,但β和γ亚基的身份及其在嗅觉信号转导中的功能尚未得到很好的确立。我们和其他人发现 Gγ13 在嗅上皮中的表达,特别是在 OSN 的纤毛中。在这项研究中,我们生成了一种条件性基因敲除小鼠系,以特异性敲除嗅觉标记蛋白表达的 OSN 中的 Gγ13 表达。免疫组织化学和 Western blot 结果表明,突变小鼠的嗅上皮中确实消除了 Gγ13 亚基。有趣的是,Gαolf、β1 亚基、Ric-8B 和 CEP290 蛋白也不存在于上皮细胞中,而效应酶腺苷酸环化酶 III 的存在基本保持不变。电嗅觉图研究表明,突变动物对一系列气味剂的反应大大降低,包括三种假定的信息素。行为测试表明,突变小鼠在执行气味导向搜索任务时的能力明显降低,尽管它们的动机和敏捷性似乎正常。我们的结果表明,Gαolf 仅与 Gβ1 和 Gγ13 在 OSN 中形成功能性异三聚体 G 蛋白,介导嗅觉信号转导。嗅觉 G 蛋白的βγ 部分的鉴定为理解嗅觉信号转导途径的反馈调节以及 OSN 的亚细胞结构的控制提供了一种新方法。

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The Na(+)/Ca(2+) exchanger NCKX4 governs termination and adaptation of the mammalian olfactory response.钠钙交换蛋白 NCKX4 调控哺乳动物嗅觉反应的终止和适应。
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G protein G(alpha)o is essential for vomeronasal function and aggressive behavior in mice.G 蛋白 G(alpha)o 对于小鼠的犁鼻器功能和攻击行为是必需的。
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G-protein betagamma-complex is crucial for efficient signal amplification in vision.G 蛋白βγ 复合物对视敏度信号放大至关重要。
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Ca2+-activated Cl− currents are dispensable for olfaction.Ca2+-激活的 Cl−电流对于嗅觉并非必需。
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