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THE STRUCTURAL ORGANIZATION OF THE SEPTATE AND GAP JUNCTIONS OF HYDRA

机译:九头蛇的九头肌和间隙结的结构组织

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摘要

The septate junctions and gap junctions of Hydra were studied utilizing the extracellular tracers lanthanum hydroxide and ruthenium red. Analysis of the septate junction from four perspectives has shown that each septum consists of a single row of hexagons sharing common sides of 50–60 A. Each hexagon is folded into chair configuration. Two sets of projections emanate from the corners of the hexagons. One set (A projections) attaches the hexagons to the cell membranes at 80–100-A intervals, while the other set (V projections) joins some adjacent septa to each other. The septate junctions generally contain a few large interseptal spaces and a few septa which do not extend the full length of the junction. Basal to the septate junctions the cells in each layer are joined by numerous gap junctions. Gap junctions also join the muscular processes in each layer as well as those which connect the layers across the mesoglea. The gap junctions of Hydra are composed of rounded plaques 0.15–0.5 µ in diameter which contain 85-A hexagonally packed subunits. Each plaque is delimited from the surrounding intercellular space by a single 40-A band. Large numbers of these plaques are tightly packed, often lying about 20 A apart. This en plaque configuration of the gap junctions of Hydra contrasts with their sparser, more widely separated distribution in many vertebrate tissues. These studies conclude that the septate junction may possess some barrier properties and that both junctions are important in intercellular adhesion. On a morphological basis, the gap junction appears to be more suitable for intercellular coupling than the septate junction.
机译:利用细胞外示踪剂氢氧化镧和钌红研究了九头蛇的分隔连接和间隙连接。从四个角度分析分隔分隔线,结果显示每个隔垫由单排六边形组成,共有50–60 A的公共边。每个六边形都折叠成椅子形状。从六边形的角部发出两组投影。一组(A突起)将六边形以80–100-A的间隔附着到细胞膜上,而另一组(V突起)将一些相邻的隔垫彼此连接。分隔连接通常包含一些较大的分隔间隔和一些隔垫,这些间隔不延伸接合的整个长度。基础到分隔的连接处,每一层中的细胞通过大量的间隙连接处连接在一起。间隙连接也连接每一层的肌肉过程以及连接跨中膜的各层的肌肉过程。 Hydra的间隙连接处由直径为0.15-0.5 µ的圆形斑块组成,其中包含85-A六角形堆积的亚基。每个噬菌斑由单个40-A条带与周围的细胞间隙隔开。这些噬菌斑大量堆积,通常相距约20A。九头蛇的缝隙连接处的这种牙斑结构与其在许多脊椎动物组织中较稀疏,更广泛分布的分布形成鲜明对比。这些研究得出的结论是,分隔的连接可能具有一定的屏障特性,并且两个连接在细胞间粘附中都非常重要。从形态学的角度来看,间隙连接似乎比分隔连接更适合细胞间偶联。

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