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Ultrastructural observations of isolated intact and fragmented junctions of skeletal muscle by use of tannic acid mordanting

机译:单宁酸媒染法对孤立完整的和断裂的骨骼肌接头的超微结构观察

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摘要

Tannic acid mordanting during fixation of isolated vesicles from skeletal muscle enhanced the resolution of the images. Isolated triadic junctions displayed two characteristic features not previously described: (a) a clear gap separated terminal cisternae from transverse tubules; (b) this gap was bridged by a separating array of structures which resembled the "feet" of intact muscle. When the triad was broken in a French press and subsequently reassembled by joining the two organelles, a similar gap was seen but the structure of the feet was less well defined. When the membrane of the triad was extracted by Triton X-100, the junctional region was retained and a similar gap between the two organelles could be discerned. The terminal cisternae characteristically displayed a thickening of the cytoplasmic leaflet of the membrane in select areas in which electron-dense material was apposed on the luminal leaflet. This thickened membrane was not observed in longitudinal reticulum or in terminal cisternae regions distal to the electron-dense matter. This thickened leaflet was not invariably associated with the junction, and some junctional regions did not display discernible thickening of the membrane. When the triad was treated with KCl, the electron-dense aggregate was dispersed and the thickened leaflet of the terminal cisternae dissipated, whereas the triadic junctional region with its feet remained unchanged. KCl treatment caused dissolution of three proteins of Mr = 77,000, 43,000, and 38,000. Treatment of Triton-resistant vesicles with KCl caused the loss of electron-dense aggregate but did not otherwise influence the appearance of the junction. A good degree of correlation both qualitatively and in quantitative parameters between the isolated vesicles and the intact muscle was observed.
机译:从骨骼肌中分离出的囊泡固定过程中的单宁酸媒染增强了图像的分辨率。孤立的三叠纪交界处表现出先前未描述的两个特征:(a)透明的间隙将末端的水箱与横向小管分开; (b)这个缝隙是由一系列分离的结构桥接的,这些结构类似于完整的肌肉的“脚”。当三合会在法国媒体中被打碎,随后通过连接两个细胞器重新组装时,看到了类似的缝隙,但脚的结构定义不清。用Triton X-100提取三重膜的膜时,保留了连接区,可以看出两个细胞器之间存在类似的间隙。末端的水箱特征性地显示了在其中电子致密材料被置于腔小叶上的选定区域中膜的细胞质小叶增厚。在纵向网状结构或电子致密物质远侧的末端池中未观察到这种增厚的膜。该增厚的小叶并非总是与结节相关,并且某些结节区域未显示出明显的膜增厚。当用KCl处理三单元组时,电子致密聚集体被分散,末端池的增厚的小叶消散,而三单元的交界区域的脚保持不变。 KCl处理导致Mr分别为77,000、43,000和38,000的三种蛋白质溶解。用KCl处理耐Triton的囊泡会导致电子致密聚集体的损失,但不会影响结点的外观。在分离的囊泡和完整的肌肉之间,在定性和定量参数上都观察到良好的相关性。

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