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鲫鱼视网膜水平细胞间缝隙连接的光依赖动力学

Light-dependent dynamics of gap junctions between horizontal cells in the retina of the crucian carp.

作者信息

Kurz-Isler G, Wolburg H

机构信息

Institute of Pathology, University of Tübingen, Federal Republic of Germany.

出版信息

Cell Tissue Res. 1988 Mar;251(3):641-9. doi: 10.1007/BF00214013.

Abstract

The dynamics of gap junctions between outer horizontal cells or their axon terminals in the retina of the crucian carp were investigated during light and dark adaptation by use of ultrathin-section and freeze-fracture electron microscopy. Light adaptation was induced by red light, while dark adaptation took place under ambient dark conditions. The two principal findings were: (1) The density of connexons within an observed gap junction is high in dark-adapted retina, and low in light-adapted retina. This, respectively, may reflect the coupled and uncoupled state of the gap junction. (2) The size of individual gap junctions is larger in light- than in dark-adapted retinae. Whereas the overall area occupied by gap junctions is reduced with dark adaptation, the percentage of small and very small gap junctions increases dramatically. A lateral shift of connexons in the gap junctional membrane is strongly suggested by these reversible processes of densification and dispersion. Two additional possibilities of gap junction modulation are discussed: (1) the de novo formation of very small gap junctions outside the large ones in the first few minutes of dark adaptation, and (2) the rearrangement of a portion of the very large gap junctions. The idea that the cytoskeleton is involved in such modulatory processes is corroborated by thin-section observations.

摘要

利用超薄切片和冷冻断裂电子显微镜技术,研究了鲫鱼视网膜中外侧水平细胞或其轴突终末之间缝隙连接在明适应和暗适应过程中的动态变化。用红光诱导明适应,在环境黑暗条件下进行暗适应。两项主要发现如下:(1)在暗适应视网膜中,观察到的缝隙连接内连接子的密度较高,而在明适应视网膜中则较低。这可能分别反映了缝隙连接的耦合和去耦合状态。(2)明适应视网膜中单个缝隙连接的尺寸比暗适应视网膜中的大。虽然暗适应时缝隙连接所占的总面积减少,但小和非常小的缝隙连接的百分比显著增加。这些致密化和分散的可逆过程强烈提示缝隙连接膜中连接子的侧向移动。还讨论了缝隙连接调节的另外两种可能性:(1)在暗适应的最初几分钟内,在大的缝隙连接之外重新形成非常小的缝隙连接;(2)一部分非常大的缝隙连接发生重排。超薄切片观察结果证实了细胞骨架参与这种调节过程的观点。

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