Dedek Karin, Schultz Konrad, Pieper Mario, Dirks Petra, Maxeiner Stephan, Willecke Klaus, Weiler Reto, Janssen-Bienhold Ulrike
Department of Neurobiology, University of Oldenburg, D-26111 Oldenburg, Germany.
Eur J Neurosci. 2006 Sep;24(6):1675-86. doi: 10.1111/j.1460-9568.2006.05052.x.
The primary rod pathway in mammals contains gap junctions between AII amacrine cells and ON cone bipolar cells which relay the rod signal into the cone pathway under scotopic conditions. Two gap junctional proteins, connexin36 (Cx36) and connexin45 (Cx45), appear to play a pivotal role in this pathway because lack of either protein leads to an impairment of visual transmission under scotopic conditions. To investigate whether these connexins form heterotypic gap junctions between ON cone bipolar and AII amacrine cells, we used newly developed Cx45 antibodies and studied the cellular and subcellular distribution of this protein in the mouse retina. Specificity of the Cx45 antibodies was determined, among others, by Western blot and immunostaining of mouse heart, where Cx45 is abundantly expressed. In mouse retina, Cx45 immunosignals were detected in both plexiform layers and the ganglion cell layer. Double staining for Cx45 and Cx36 revealed a partial overlap in the punctate patterns in the ON sublamina of the inner plexiform layer of the retina. We quantified the distributions of these two connexins in the ON sublamina, and detected 30% of the Cx45 signals to be co-localized with or in close apposition to Cx36 signals. Combining immunostaining and intracellular dye injection revealed an overlap or tight association of Cx36 and Cx45 signals on the terminals of injected AII amacrine and two types of ON cone bipolar cells. Our results provide direct evidence for heterotypic gap junctions composed of Cx36 and Cx45 between AII amacrine and certain types of ON cone bipolar cells.
哺乳动物的主要视杆细胞通路在AII无长突细胞和ON型视锥双极细胞之间含有缝隙连接,在暗视条件下,这些缝隙连接将视杆细胞信号传递到视锥细胞通路。两种缝隙连接蛋白,连接蛋白36(Cx36)和连接蛋白45(Cx45),似乎在该通路中起关键作用,因为缺乏这两种蛋白中的任何一种都会导致暗视条件下视觉传递受损。为了研究这些连接蛋白是否在ON型视锥双极细胞和AII无长突细胞之间形成异型缝隙连接,我们使用了新开发的Cx45抗体,并研究了该蛋白在小鼠视网膜中的细胞和亚细胞分布。Cx45抗体的特异性通过蛋白质印迹法以及对Cx45大量表达的小鼠心脏进行免疫染色等方法得以确定。在小鼠视网膜中,在内网状层和神经节细胞层均检测到Cx45免疫信号。对Cx45和Cx36进行双重染色显示,视网膜内网状层ON亚层的点状模式存在部分重叠。我们对这两种连接蛋白在ON亚层中的分布进行了定量分析,发现30%的Cx45信号与Cx36信号共定位或紧密相邻。将免疫染色与细胞内染料注射相结合,发现在注入的AII无长突细胞和两种类型的ON型视锥双极细胞的终末上,Cx36和Cx45信号存在重叠或紧密关联。我们的结果为AII无长突细胞和某些类型的ON型视锥双极细胞之间由Cx36和Cx45组成的异型缝隙连接提供了直接证据。