Eisenberg B R, Eisenberg R S
J Gen Physiol. 1982 Jan;79(1):1-19. doi: 10.1085/jgp.79.1.1.
The junction between the T system and sarcoplasmic reticulum (SR) of frog skeletal muscle was examined in resting and contracting muscles. Pillars, defined as pairs of electron-opaque lines bounding an electron-lucent interior, were seen spanning the gap between T membrane and SR. Feet, defined previously in images of heavily stained preparations, appear with electron-opaque interiors and as such are distinct from the pillars studied here. Amorphous material was often present in the gap between T membrane and SR. Sometimes the amorphous material appeared as a thin line parallel to the membranes; sometimes it seemed loosely organized at the sites where feet have been reported. Resting single fibers contained 39 +/- 14.3 (mean +/- SD; n = 9 fibers) pillars/micrometer2 of tubule membrane. Single fibers, activated by a potassium-rich solution at 4 degrees C, contained 66 +/- 12.9 pillars/micrometer2 (n = 8) but fibers contracting in response to 2 mM caffeine contained 33 +/- 8.6/micrometer2 (n = 5). Pillar formation occurs when fibers are activated electrically, but not when calcium is released directly from the SR; and so we postulate that pillar formation is a step in excitation-contraction coupling.
在静息和收缩状态的青蛙骨骼肌中,对T管系统与肌浆网(SR)之间的连接进行了检查。柱状结构(定义为一对界定电子透明内部的电子不透明线)可见跨越T膜和SR之间的间隙。足部结构(先前在重度染色制剂的图像中定义)呈现电子不透明的内部,因此与这里研究的柱状结构不同。无定形物质经常存在于T膜和SR之间的间隙中。有时无定形物质表现为与膜平行的细线;有时它似乎在报告有足部结构的部位松散排列。静息单纤维每平方微米的小管膜含有39±14.3(平均值±标准差;n = 9根纤维)个柱状结构。在4℃下用富含钾的溶液激活的单纤维,每平方微米含有66±12.9个柱状结构(n = 8),但对2 mM咖啡因产生收缩反应的纤维每平方微米含有33±8.6个(n = 5)。当纤维被电激活时会形成柱状结构,但当钙直接从SR释放时则不会;因此我们推测柱状结构的形成是兴奋 - 收缩偶联中的一个步骤。