Ciolofan C, Li X-B, Olson C, Kamasawa N, Gebhardt B R, Yasumura T, Morita M, Rash J E, Nagy J I
Department of Physiology, Faculty of Medicine, University of Manitoba, 730 William Avenue, Winnipeg, Manitoba, Canada R3E 3J7.
Neuroscience. 2006 Jun 30;140(2):433-51. doi: 10.1016/j.neuroscience.2006.02.032. Epub 2006 May 2.
Most gap junctions between neurons in mammalian retina contain abundant connexin36, often in association with the scaffolding protein zonula occludens-1. We now investigate co-association of connexin36, zonula occludens-1, zonula occludens-2 and Y-box transcription factor 3 (zonula occludens-1-associated nucleic acid-binding protein) in mouse and rat retina. By immunoblotting, zonula occludens-1-associated nucleic acid-binding protein and zonula occludens-2 were both detected in retina, and zonula occludens-2 in retina was found to co-immunoprecipitate with connexin36. By immunofluorescence, the four proteins appeared as puncta distributed in the plexiform layers. In the inner plexiform layer, most connexin36-puncta were co-localized with zonula occludens-1, and many were co-localized with zonula occludens-1-associated nucleic acid-binding protein. Moreover, zonula occludens-1-associated nucleic acid-binding protein was often co-localized with zonula occludens-1. Nearly all zonula occludens-2-puncta were positive for connexin36, zonula occludens-1 and zonula occludens-1-associated nucleic acid-binding protein. In the outer plexiform layer, connexin36 was also often co-localized with zonula occludens-1-associated nucleic acid-binding protein. In connexin36 knockout mice, labeling of zonula occludens-1 was slightly reduced in the inner plexiform layer, zonula occludens-1-associated nucleic acid-binding protein was decreased in the outer plexiform layer, and both zonula occludens-1-associated nucleic acid-binding protein and zonula occludens-2 were markedly decreased in the inner sublamina of the inner plexiform layer, whereas zonula occludens-1, zonula occludens-2 and zonula occludens-1-associated nucleic acid-binding protein puncta persisted and remained co-localized in the outer sublamina of the inner plexiform layer. By freeze-fracture replica immunogold labeling, connexin36 was found to be co-localized with zonula occludens-2 within individual neuronal gap junctions. In addition, zonula occludens-1-associated nucleic acid-binding protein was abundant in a portion of ultrastructurally-defined gap junctions throughout the inner plexiform layer, and some of these junctions contained both connexin36 and zonula occludens-1-associated nucleic acid-binding protein. These distinct patterns of connexin36 association with zonula occludens-1, zonula occludens-2 and zonula occludens-1-associated nucleic acid-binding protein in different sublaminae of retina, and differential responses of these proteins to connexin36 gene deletion suggest differential regulatory and scaffolding roles of these gap junction accessory proteins. Further, the persistence of a subpopulation of zonula occludens-1/zonula occludens-2/zonula occludens-1-associated nucleic acid-binding protein co-localized puncta in the outer part of the inner plexiform layer of connexin36 knockout mice suggests close association of these proteins with other structures in retina, possibly including gap junctions composed of an as-yet-unidentified connexin.
哺乳动物视网膜中神经元之间的大多数缝隙连接含有丰富的连接蛋白36,通常与支架蛋白闭合小带-1相关联。我们现在研究连接蛋白36、闭合小带-1、闭合小带-2和Y盒转录因子3(闭合小带-1相关核酸结合蛋白)在小鼠和大鼠视网膜中的共关联情况。通过免疫印迹法,在视网膜中检测到了闭合小带-1相关核酸结合蛋白和闭合小带-2,并且发现视网膜中的闭合小带-2与连接蛋白36发生了共免疫沉淀。通过免疫荧光法,这四种蛋白呈现为分布在神经纤维层的点状结构。在内神经纤维层,大多数连接蛋白36点状结构与闭合小带-1共定位,许多还与闭合小带-1相关核酸结合蛋白共定位。此外,闭合小带-1相关核酸结合蛋白常常与闭合小带-1共定位。几乎所有闭合小带-2点状结构对连接蛋白36、闭合小带-1和闭合小带-1相关核酸结合蛋白均呈阳性。在外神经纤维层,连接蛋白36也常常与闭合小带-1相关核酸结合蛋白共定位。在连接蛋白36基因敲除小鼠中,内神经纤维层中闭合小带-1的标记略有减少,外神经纤维层中闭合小带-1相关核酸结合蛋白减少,内神经纤维层内亚层中闭合小带-1相关核酸结合蛋白和闭合小带-2均显著减少,而闭合小带-1、闭合小带-2和闭合小带-1相关核酸结合蛋白点状结构在内神经纤维层外亚层中持续存在并保持共定位。通过冷冻断裂复型免疫金标记法,发现在单个神经元缝隙连接内连接蛋白36与闭合小带-2共定位。此外,闭合小带-1相关核酸结合蛋白在整个内神经纤维层中一部分超微结构定义的缝隙连接中含量丰富,其中一些连接同时含有连接蛋白36和闭合小带-1相关核酸结合蛋白。连接蛋白36与闭合小带-1、闭合小带-2和闭合小带-1相关核酸结合蛋白在视网膜不同亚层中的这些不同共定位模式,以及这些蛋白对连接蛋白36基因缺失的不同反应,提示了这些缝隙连接辅助蛋白具有不同的调节和支架作用。此外,在连接蛋白36基因敲除小鼠内神经纤维层外部,闭合小带-1/闭合小带-2/闭合小带-1相关核酸结合蛋白共定位点状结构亚群的持续存在,表明这些蛋白与视网膜中的其他结构紧密相关,可能包括由尚未鉴定的连接蛋白组成的缝隙连接。