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连接蛋白57在小鼠水平细胞的树突-树突和轴突-轴突缝隙连接中表达,其分布受光调节。

Connexin57 is expressed in dendro-dendritic and axo-axonal gap junctions of mouse horizontal cells and its distribution is modulated by light.

作者信息

Janssen-Bienhold Ulrike, Trümpler Jennifer, Hilgen Gerrit, Schultz Konrad, Müller Luis Pérez De Sevilla, Sonntag Stephan, Dedek Karin, Dirks Petra, Willecke Klaus, Weiler Reto

机构信息

Department of Neurobiology, University of Oldenburg, D-26111 Oldenburg, Germany.

出版信息

J Comp Neurol. 2009 Apr 1;513(4):363-74. doi: 10.1002/cne.21965.

Abstract

Mouse horizontal cells are coupled by gap junctions composed of connexin57. These gap junctions are regulated by ambient light via multiple neuromodulators including dopamine. In order to analyze the distribution and structure of horizontal cell gap junctions in the mouse retina, and examine the effects of light adaptation on gap junction density, we developed antibodies that detect mouse retinal connexin57. Using immunohistochemistry in retinal slices, flat-mounted retinas, and dissociated retinal cells, we showed that connexin57 is expressed in the dendrites and axon terminal processes of mouse horizontal cells. No staining was found in retinas of connexin57-deficient mice. Significantly more connexin57-positive puncta were found in the distal than in the proximal outer plexiform layer, indicating a higher level of expression in axon terminal processes than in the dendrites. We also examined the gap junctions using immunoelectron microscopy and showed that connexin57 does not form hemichannels in the horizontal cell dendritic tips. Light adaptation resulted in a significant increase in the number of connexin57-immunoreactive plaques in the outer plexiform layer, consistent with previously reported effects of light adaptation on connexin57 expression in the mouse retina. This study shows for the first time the detailed location of connexin57 expression within mouse horizontal cells, and provides the first ultrastructural data on mouse horizontal cell gap junctions.

摘要

小鼠水平细胞通过由连接蛋白57组成的缝隙连接相互耦联。这些缝隙连接受包括多巴胺在内的多种神经调质通过环境光调节。为了分析小鼠视网膜中水平细胞缝隙连接的分布和结构,并研究光适应对缝隙连接密度的影响,我们开发了可检测小鼠视网膜连接蛋白57的抗体。利用视网膜切片、平铺视网膜和离体视网膜细胞的免疫组织化学方法,我们发现连接蛋白57在小鼠水平细胞的树突和轴突终末中表达。在连接蛋白57缺陷小鼠的视网膜中未发现染色。在外丛状层远端发现的连接蛋白57阳性斑点明显多于近端,表明轴突终末中的表达水平高于树突。我们还利用免疫电子显微镜检查了缝隙连接,结果显示连接蛋白57在水平细胞树突尖端不形成半通道。光适应导致外丛状层中连接蛋白57免疫反应性斑块数量显著增加,这与先前报道的光适应对小鼠视网膜中连接蛋白57表达的影响一致。本研究首次展示了连接蛋白57在小鼠水平细胞内表达的详细位置,并提供了关于小鼠水平细胞缝隙连接的首个超微结构数据。

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