Pimentel Diogo O, Margrie Troy W
The Department of Neuroscience, Physiology and Pharmacology, University College London, London, UK.
J Physiol. 2008 Apr 15;586(8):2107-19. doi: 10.1113/jphysiol.2007.149575. Epub 2008 Feb 14.
In the olfactory bulb the sets of mitral cells that project their apical dendrite to the same glomerulus represent unique functional networks. While it is known that mitral cells release vesicular glutamate from their apical tuft it is believed that the resultant self-excitation (SE), transmitted via dendritic gap junctions, is the main form of lateral transmission within the mitral cell assembly. In this study we used simultaneous whole-cell recordings from mitral cell pairs to show that a direct form of chemical lateral excitation (LE) provides a means of mitral cell-mitral cell communication. In contrast to the ubiquitous expression and robust nature of SE, the efficacy of glutamatergic LE between mitral cells is highly variable and mediated by calcium-impermeable AMPA receptors. We also find that the strength of LE is bi-directionally modulated, in a homeostatic manner, by sniffing-like patterns of presynaptic activity. Since these changes last many minutes we suggest that such mitral cell-mitral cell interactions provide the glomerular network with a locus for olfactory plasticity and a potential mechanism for receptive field modulation.
在嗅球中,将其顶端树突投射到同一肾小球的一组组二尖瓣细胞代表着独特的功能网络。虽然已知二尖瓣细胞从其顶端簇释放囊泡性谷氨酸,但据信通过树突间隙连接传递的由此产生的自激(SE)是二尖瓣细胞组件内横向传递的主要形式。在本研究中,我们使用对二尖瓣细胞对进行同步全细胞记录,以表明化学性横向兴奋(LE)的直接形式提供了一种二尖瓣细胞与二尖瓣细胞之间通信的方式。与SE的普遍表达和强大性质相反,二尖瓣细胞之间谷氨酸能LE的效力高度可变,并由钙不渗透的AMPA受体介导。我们还发现,LE的强度通过类似嗅吸的突触前活动模式以稳态方式进行双向调节。由于这些变化持续许多分钟,我们认为这种二尖瓣细胞与二尖瓣细胞之间的相互作用为肾小球网络提供了一个嗅觉可塑性位点和一种感受野调制的潜在机制。