Kingsley R J, Watabe N
Cell Tissue Res. 1984;235(3):533-8. doi: 10.1007/BF00226950.
The sequence of the synthesis and transport of the organic matrix of spicules has been elucidated in the gorgonian Leptogorgia virgulata by use of 3H-aspartic acid as the tracer in electron-microscopic autoradiography. The entire process of matrix synthesis and transport takes approximately 2 h. It seems that the protein moiety of the organic matrix is synthesized in the RER prior to 5 min following the initial 10 min incubation in the tracer. At the 5 min chase the label is moving from the RER to the Golgi complexes where the carbohydrate moiety of the matrix is presumed to be synthesized. At the 5 to 15 min chases the label is transported out of the Golgi complexes via Golgi vesicles. This phase continues for 30 min. From 60 to 120 min the 3H-aspartic acid moves to the spicules. After 120 min the majority of the label has moved into the spicules. Silver grain counts over both multivesicular and electron-dense bodies remain at relatively low and constant levels over 4 h indicating that neither organelle is involved in the synthesis and transport of the organic matrix.
通过使用³H-天冬氨酸作为电子显微镜放射自显影中的示踪剂,在柳珊瑚Leptogorgia virgulata中阐明了骨针有机基质的合成和运输序列。基质合成和运输的整个过程大约需要2小时。有机基质的蛋白质部分似乎在示踪剂中最初孵育10分钟后的5分钟内于粗面内质网中合成。在5分钟的追踪期,标记物从粗面内质网转移到高尔基体复合体,推测基质的碳水化合物部分在此合成。在5至15分钟的追踪期,标记物通过高尔基体小泡从高尔基体复合体中运输出来。这个阶段持续30分钟。从60至120分钟,³H-天冬氨酸转移到骨针中。120分钟后,大部分标记物已进入骨针。在4小时内,多囊泡体和电子致密体上的银粒计数保持在相对较低且恒定的水平,表明这两种细胞器均不参与有机基质的合成和运输。