Cullen Eye Institute, Baylor College of Medicine, One Baylor Plaza, NC-205, Houston, TX 77030, USA.
J Physiol. 2012 Feb 15;590(4):845-54. doi: 10.1113/jphysiol.2011.224113. Epub 2012 Jan 4.
Bipolar cells are the central neurons of the retina that convey visual signals from rod and cone photoreceptors in the outer retina to higher-order neurons in the inner retina and the brain. Early anatomical studies have suggested that there are four types of cone hyperpolarizing (OFF) bipolar cells (HBCs) in the mouse retina, but no light responses have been systematically examined. By analysing light-evoked cation and chloride currents (I(C) and I(Cl)) from over 50 morphologically identified HBCs in the dark-adapted wildtype and connexin36 knockout (Cx36(-/-)) mouse retinas, we identified three types of HBCs, each with distinct light responses and morphological characteristics. The HBC(R/MC)s with axon terminals ramifying between 0% and 30% of the inner plexiform layer (IPL) receive mixed inputs from rods and M-cones, the HBC(MC)s with axon terminals ramifying between 10% and 50% of the IPL receive inputs primarily from M-cones, and the HBC(M/SC)s with axon terminals ramifying between 25% and 50% of IPL receive inputs primarily from cones with mixed M- and S-cone pigments. Moreover, we found that HBC(R/MC)s in the Cx36(-/-) mice exhibit light responses very similar to the wildtype HBC(R/MC)s, suggesting that the mixed rod-cone inputs are not mediated by connexin36-dependent rod-cone coupling, but rather by direct synaptic contacts from rods and M-cones. This study constitutes the first systematic investigation that correlates light response characteristics and axonal morphology of HBCs in dark-adapted mouse retina, and contributes to recently emerging evidence that revises the traditional view that mammalian HBCs only contact cone photoreceptors.
双极细胞是视网膜的中枢神经元,它们将来自外视网膜的视杆和视锥光感受器的视觉信号传递到内视网膜和大脑的高级神经元。早期的解剖学研究表明,在小鼠视网膜中存在四种类型的视锥超极化(OFF)双极细胞(HBC),但尚未系统地研究过其光反应。通过分析暗适应野生型和连接蛋白 36 敲除(Cx36(-/-))小鼠视网膜中超过 50 个形态识别的 HBC 中的光诱发阳离子和氯离子电流(I(C)和 I(Cl)),我们鉴定出三种类型的 HBC,每种类型都具有独特的光反应和形态特征。轴突末梢在 0%到 30%的内丛状层(IPL)之间分支的 HBC(R/MC)s 接收来自视杆和 M-视锥的混合输入,轴突末梢在 10%到 50%的 IPL 之间分支的 HBC(MC)s 主要接收来自 M-视锥的输入,而轴突末梢在 25%到 50%的 IPL 之间分支的 HBC(M/SC)s 主要接收来自具有混合 M-和 S-视锥色素的视锥的输入。此外,我们发现 Cx36(-/-)小鼠中的 HBC(R/MC)s 表现出与野生型 HBC(R/MC)s 非常相似的光反应,这表明混合视杆-视锥输入不是通过连接蛋白 36 依赖性视杆-视锥偶联介导的,而是来自视杆和 M-视锥的直接突触接触。这项研究首次系统地研究了暗适应小鼠视网膜中 HBC 的光反应特征和轴突形态之间的相关性,为最近出现的修正哺乳动物 HBC 仅接触视锥光感受器的传统观点的证据做出了贡献。