Zhou Zhishang, Belluscio Leonardo
Developmental Neural Plasticity Unit, National Institute of Neurological Disorders and Stroke-National Institutes of Health, Bethesda, Maryland 20892, USA.
J Neurosci. 2008 Oct 1;28(40):9920-8. doi: 10.1523/JNEUROSCI.3082-08.2008.
In the mammalian olfactory system, intrabulbar projections (IBPs) mediated by a class of external tufted cells (ET cells) specifically link isofunctional odor columns within the same olfactory bulb. To study the function of these ET cells within the glomerular network, we developed a "hemibulb" preparation that maintains IBPs intact enabling the select activation of ET cells associated with specific glomeruli. Using P2-GFP mice, a line in which the P2 glomeruli are labeled with green fluorescent protein, we recorded from P2 mitral cells (MT cells) while selectively stimulating P2 ET cells. Here, we show that ET-cell activity evokes a slow modulatory (SM) potential within MT cells, which is mediated by the glomerular network and consists of both excitatory and inhibitory components. Interestingly, the timing of the SM potential with respect to olfactory nerve (ON) stimulation can produce converse effects on MT-cell output. When ET-cell activity precedes ON stimulation, the MT-cell response is potentiated; however, when ET-cell activity follows ON stimulation, the MT-cell response is inhibited. Thus, intrabulbar projecting ET cells can shape olfactory bulb output through intraglomerular modulation of MT cells.
在哺乳动物嗅觉系统中,一类外部簇状细胞(ET细胞)介导的球内投射(IBP)特异性地连接同一嗅球内的同功能气味柱。为了研究这些ET细胞在肾小球网络中的功能,我们开发了一种“半嗅球”制剂,该制剂可保持IBP完整,从而能够选择性激活与特定肾小球相关的ET细胞。利用P2-GFP小鼠(一种P2肾小球用绿色荧光蛋白标记的品系),我们在选择性刺激P2 ET细胞的同时记录了P2二尖瓣细胞(MT细胞)的活动。在此,我们表明ET细胞活动在MT细胞内引发了一种缓慢调节(SM)电位,该电位由肾小球网络介导,由兴奋性和抑制性成分组成。有趣的是,SM电位相对于嗅神经(ON)刺激的时间可以对MT细胞输出产生相反的影响。当ET细胞活动先于ON刺激时,MT细胞反应增强;然而,当ET细胞活动跟随ON刺激时,MT细胞反应受到抑制。因此,球内投射的ET细胞可以通过对MT细胞的球内调节来塑造嗅球输出。