Usukura J, Yamada E
Cell Tissue Res. 1987 Mar;247(3):483-8. doi: 10.1007/BF00215740.
The three-dimensional structure of synaptic ribbons in photoreceptor cells of the frog retina was studied with freeze-etching and freeze-substitution methods, combined with a rapid-freezing technique. Although the synaptic ribbon consisted of two electron-dense plaques bisected by an electron-lucent layer in conventional thin sections, such lamellar nature was not so evident in freeze-etched replicas. The cytoplasmic surfaces of the synaptic ribbon presented an extremely regular arrangements of small particles 4-6 nm in diameter. Fine filaments 8-10 nm in diameter and 30-50 nm in length connected synaptic vesicles and the ribbon surface. These connections were mediated by large particles on both ends of the filaments. Approximately 3-5 filaments attached to one synaptic vesicle. Synaptic ribbons were anchored to a characteristic meshwork underlying the presynaptic membrane via another group of similar fine filaments. The meshwork seemed to be an etched replicated image of the presynaptic archiform density observed in thin sections.
采用冷冻蚀刻和冷冻置换方法,并结合快速冷冻技术,研究了蛙视网膜光感受器细胞中突触带的三维结构。在传统的超薄切片中,突触带由两个被电子透明层平分的电子致密斑块组成,但其层状结构在冷冻蚀刻复制品中并不明显。突触带的胞质表面呈现出直径为4 - 6 nm的小颗粒极其规则的排列。直径为8 - 10 nm、长度为30 - 50 nm的细丝连接着突触小泡和突触带表面。这些连接由细丝两端的大颗粒介导。一个突触小泡大约附着3 - 5根细丝。突触带通过另一组类似的细丝锚定在突触前膜下方的特征性网络上。该网络似乎是在超薄切片中观察到的突触前拱形致密结构的蚀刻复制图像。