Zhang Jian, Wu Samuel M
Cullen Eye Institute, Baylor College of Medicine, Houston, Texas 77030, USA.
J Comp Neurol. 2004 Feb 23;470(1):1-12. doi: 10.1002/cne.10967.
Photoreceptors in the vertebrate retina are electrically coupled with one another. Such coupling plays important roles in visual information processing. Physiological properties of rod-rod and rod-cone coupling have been best studied in the salamander retina, yet the cellular and molecular basis of these electrical synapses has not been established. Recently, connexin35/36 (Cx35/36) gap junction proteins were found to be highly expressed in brain and retina, suggesting that it may mediate photoreceptor coupling. To test this idea, we examined the cellular distribution of Cx35/36 in the salamander retina. Western blot analysis showed the expression of Cx35/36 proteins, and confocal microscopy revealed characteristic punctate Cx35/36 immunoreactivity in both synaptic layers. In addition, Cx35/36-positive plaques were detected in the outer nuclear layer (ONL) between neighboring rods, and these plaques outlined the mosaic of the rod network at a level distal to the external limiting membrane. Moreover, although Cx35/36 plaques were detected between some cones and their adjacent rods, the number and size of these plaques was smaller, and their staining intensity was diminished compared with the plaques between adjacent rods. Furthermore, Lucifer yellow injection together with confocal microscopy revealed that Cx35/36-puncta were colocalized with finlike structures of rod cell membrane, with the ultrastructure of gap junctions between paired rod fins having been found by electron microscopy. Therefore, our findings demonstrate that Cx35/36 expression in photoreceptors is primarily located between rods and to a lesser extent between rods and cones, suggesting that Cx35/36 may participate in electrical coupling between rods and between rods and cones in the salamander retina.
脊椎动物视网膜中的光感受器彼此电耦合。这种耦合在视觉信息处理中发挥着重要作用。蝾螈视网膜中杆体-杆体和杆体-锥体耦合的生理特性得到了最好的研究,但这些电突触的细胞和分子基础尚未确立。最近,发现连接蛋白35/36(Cx35/36)间隙连接蛋白在大脑和视网膜中高度表达,这表明它可能介导光感受器耦合。为了验证这一想法,我们检查了蝾螈视网膜中Cx35/36的细胞分布。蛋白质免疫印迹分析显示了Cx35/36蛋白的表达,共聚焦显微镜揭示了两个突触层中特征性的点状Cx35/36免疫反应性。此外,在相邻杆体之间的外核层(ONL)中检测到Cx35/36阳性斑块,这些斑块在外部限制膜远端的水平勾勒出杆体网络的镶嵌图。此外,虽然在一些锥体与其相邻杆体之间检测到了Cx35/36斑块,但这些斑块的数量和大小较小,与相邻杆体之间的斑块相比,其染色强度减弱。此外,荧光黄注射结合共聚焦显微镜显示,Cx35/36点状结构与杆体细胞膜的鳍状结构共定位,通过电子显微镜发现了成对杆体鳍之间间隙连接的超微结构。因此,我们的研究结果表明,光感受器中Cx35/36的表达主要位于杆体之间,在杆体与锥体之间的程度较小,这表明Cx35/36可能参与蝾螈视网膜中杆体之间以及杆体与锥体之间的电耦合。