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ABUNDANCE AND ULTRASTRUCTURAL DIVERSITY OF NEURONAL GAP JUNCTIONS IN THE OFF AND ON SUBLAMINAE OF THE INNER PLEXIFORM LAYER OF RAT AND MOUSE RETINA

机译:大鼠和小鼠视网膜内复形层内层和下层亚层中神经间隙连接的丰度和超微结构多样性

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摘要

Neuronal gap junctions are abundant in both outer and inner plexiform layers of the mammalian retina. In the inner plexiform layer (IPL), ultrastructurally-identified gap junctions were reported primarily in the functionally-defined and anatomically-distinct ON sublamina, with few reported in the OFF sublamina. We used freeze-fracture replica immunogold labeling and confocal microscopy to quantitatively analyze the morphologies and distributions of neuronal gap junctions in the IPL of adult rat and mouse retina. Under “baseline” conditions (photopic illumination/general anesthesia), 649 neuronal gap junctions immunogold-labeled for connexin36 were identified in rat IPL, of which 375 were photomapped to OFF vs. ON sublaminae. In contrast to previous reports, the volume-density of gap junctions was equally abundant in both sublaminae. Five distinctive morphologies of gap junctions were identified: conventional crystalline and non-crystalline “plaques” (71% and 3%), plus unusual “string” (14%), “ribbon” (7%) and “reticular” (2%) forms. Plaque and reticular gap junctions were distributed throughout the IPL. However, string and ribbon gap junctions were restricted to the OFF sublamina, where they represented 48% of gap junctions in that layer. In string and ribbon junctions, curvilinear strands of connexons were dispersed over 5 to 20 times the area of conventional plaques having equal numbers of connexons. To define morphologies of gap junctions under different light-adaptation conditions, we examined an additional 1150 gap junctions from rats and mice prepared after 30 min of photopic, mesopic and scotopic illumination, with and without general anesthesia. Under these conditions, string and ribbon gap junctions remained abundant in the OFF sublamina and absent in the ON sublamina. Abundant gap junctions in the OFF sublamina of these two rodents with rod-dominant retinas revealed previously-undescribed but extensive pathways for inter-neuronal communication; and the wide dispersion of connexons in string and ribbon gap junctions suggests unique structural features of gap junctional coupling in the OFF vs. ON sublamina.
机译:神经元间隙连接在哺乳动物视网膜的外和内丛状层中都丰富。在内部丛状层(IPL)中,主要在功能定义且解剖学上不同的ON层中报告了超微结构识别的间隙连接,而在OFF层中则报道很少。我们使用冷冻断裂复制品免疫金标记和共聚焦显微镜定量分析成年大鼠和小鼠视网膜IPL中神经元间隙连接的形态和分布。在“基线”条件下(照度照明/全身麻醉),在大鼠IPL中鉴定了649个免疫金标记的连接蛋白36神经元间隙连接,其中375个被光映射为OFF与ON的薄层。与以前的报告相反,在两个亚层中,间隙连接的体积密度同样丰富。确定了间隙连接的五种独特形态:常规的晶体和非晶体“斑块”(71%和3%),以及不寻常的“弦”(14%),“色带”(7%)和“网状”(2%) ) 形式。斑块和网状间隙连接分布在整个IPL中。但是,字符串和带状间隙连接仅限于OFF子层,在该层中它们代表该间隙连接的48%。在弦和带状连接处,曲线形的连接线束分布在具有相同数量连接线的传统噬菌斑面积的5至20倍。为了定义在不同的光适应条件下的间隙连接的形态,我们检查了在有和没有全身麻醉的情况下,在明,中视和暗视照明30分钟后制备的大鼠和小鼠的另外1150个间隙连接。在这种情况下,OFF子层中的线和带状间隙连接处仍然丰富,而ON子层中则不存在。这两个啮齿动物的杆状视网膜的OFF层中有大量的间隙连接,揭示了以前未描述但广泛的神经元间通讯途径。连接子在带状和带状间隙连接处的广泛分布表明,在OFF与ON子层中,间隙连接耦合具有独特的结构特征。

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