Haverkamp Silke, Müller Ulrike, Harvey Kirsten, Harvey Robert J, Betz Heinrich, Wässle Heinz
Department of Neuroanatomy, Max-Planck-Institute for Brain Research, D-60528 Frankfurt/Main, Germany.
J Comp Neurol. 2003 Oct 27;465(4):524-39. doi: 10.1002/cne.10852.
Glycine receptors (GlyRs) and their role in retinal circuitry were analyzed immunocytochemically in wild-type and GlyR alpha3 subunit-deficient (Glra3(-/-)) mouse retinae. GlyRs are localized in the inner plexiform layer in brightly fluorescent puncta, which are likely to represent postsynaptically clustered GlyRs. Approximately one third of the clusters were found to contain the alpha1 subunit, and half possessed the alpha3 subunit. However, these two GlyR isoforms were localized at different glycinergic synapses. In the Glra3(-/-) mouse, alpha3 subunit clusters were completely eliminated, although the total number of GlyR clusters was only slightly reduced. This finding indicates that other GlyR subunits (such as alpha2 or alpha4) may have compensated for the loss of the alpha3 subunit. Characteristic expression patterns of the alpha1 and alpha3 subunits within the synaptic circuits of the retina were revealed by double labeling sections for GlyRs and markers that define specific retinal neurons. The alpha1 subunit mediates signal transfer in the rod pathway between AII amacrine cells and OFF-cone bipolar cells. In contrast, the alpha3 subunit appears to be predominantly involved with the cone pathways. Thus, expression of different GlyR alpha subunit genes correlates with anatomically defined connectivities.
利用免疫细胞化学方法,对野生型和甘氨酸受体α3亚基缺陷型(Glra3(-/-))小鼠视网膜中的甘氨酸受体(GlyRs)及其在视网膜神经回路中的作用进行了分析。GlyRs定位于内网状层中明亮荧光的斑点处,这些斑点可能代表突触后聚集的GlyRs。发现约三分之一的簇含有α1亚基,一半含有α3亚基。然而,这两种GlyR亚型定位于不同的甘氨酸能突触。在Glra3(-/-)小鼠中,α3亚基簇完全消失,尽管GlyR簇的总数仅略有减少。这一发现表明其他GlyR亚基(如α2或α4)可能补偿了α3亚基的缺失。通过对GlyRs和定义特定视网膜神经元的标志物进行双重标记切片,揭示了视网膜突触回路中α1和α3亚基的特征性表达模式。α1亚基介导AII无长突细胞和视锥OFF双极细胞之间视杆通路的信号传递。相反,α3亚基似乎主要参与视锥通路。因此,不同GlyRα亚基基因的表达与解剖学上定义的连接性相关。