Champalimaud Research, Champalimaud Centre for the Unknown, Lisbon, Portugal.
Functional Neuroanatomy Department, Institute for Anatomy and Cell Biology, Heidelberg University, Heidelberg, Germany.
PLoS Biol. 2018 Aug 20;16(8):e2003816. doi: 10.1371/journal.pbio.2003816. eCollection 2018 Aug.
Dendrodendritic synaptic interactions between olfactory bulb mitral and granule cells represent a key neuronal mechanism of odor discrimination. Dendritic release of gamma-aminobutyric acid (GABA) from granule cells contributes to stimulus-dependent, rapid, and accurate odor discrimination, yet the physiological mechanisms governing this release and its behavioral relevance are unknown. Here, we show that granule cells express the voltage-gated sodium channel α-subunit NaV1.2 in clusters distributed throughout the cell surface including dendritic spines. Deletion of NaV1.2 in granule cells abolished spiking and GABA release as well as inhibition of synaptically connected mitral cells (MCs). As a consequence, mice required more time to discriminate highly similar odorant mixtures, while odor discrimination learning remained unaffected. In conclusion, we show that expression of NaV1.2 in granule cells is crucial for physiological dendritic GABA release and rapid discrimination of similar odorants with high accuracy. Hence, our data indicate that neurotransmitter-releasing dendritic spines function just like axon terminals.
嗅球内嗅球和颗粒细胞之间的树突树突状突触相互作用代表了气味辨别关键的神经元机制。颗粒细胞中γ-氨基丁酸(GABA)的树突释放有助于刺激依赖性的快速、准确的气味辨别,然而,控制这种释放及其行为相关性的生理机制尚不清楚。在这里,我们表明颗粒细胞在细胞表面的簇中表达电压门控钠离子通道α亚基 NaV1.2,包括树突棘。颗粒细胞中 NaV1.2 的缺失消除了尖峰和 GABA 的释放以及突触连接的嗅球内嗅球细胞(MCs)的抑制。结果,老鼠需要更多的时间来辨别高度相似的气味混合物,而气味辨别学习则不受影响。总之,我们表明,颗粒细胞中 NaV1.2 的表达对于生理上的树突 GABA 释放和快速辨别高度相似的气味具有高度准确性至关重要。因此,我们的数据表明,释放神经递质的树突棘的功能就像轴突末端一样。