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神经垂体分泌过程中膜事件的冰冻断裂研究。

A freeze-fracture study of membrane events during neurohypophysial secretion.

作者信息

Theodosis D T, Dreifuss J J, Orci L

出版信息

J Cell Biol. 1978 Aug;78(2):542-53. doi: 10.1083/jcb.78.2.542.

Abstract

Freeze-fracture was used to study the membrane events taking place during neurosecretory granule discharge (exocytosis) and subsequent membrane internalization (endocytosis) in axons of neurohypophyses from control and water-deprived rats. En face views of the cytoplasmic leaflet (P face) of the split axolemma reveal circular depressions that represent the secretory granule membranes fused with the plasma membrane during exocytosis. These depressions often contain granule core material in the process of extrusion into the extracellular space. The membrane surrounding some of the exocytotic openings shows a decreased number of intramembrane particles (mean diameter, 8 nm) which are elsewhere more numerous and evenly distrubuted on the fracture face. Endocytotic sites appear as smaller plasma membrane invaginations, with associated intramembrane particles. Moreover, such invaginations often contain large particles (mean diameter, 12 nm) that appear as clusters on en face views of the membrane leaflet. Quantitative analysis indicates that the number of exocytotic images increases significantly in glands from water-deprived rats. Concomitantly, the number of endocytotic figures per unit area of membrane is raised as is the number of clusters of large particles. The observations demonstrate that, in the neurohypophysis, it is possible to distinguish exocytosis morphologically from endocytosis and that the two events can be assessed quantitatively.

摘要

采用冷冻断裂技术研究了对照大鼠和禁水大鼠神经垂体轴突中神经分泌颗粒释放(胞吐作用)及随后的膜内化(内吞作用)过程中发生的膜事件。劈开的轴突膜细胞质小叶(P面)的正面观显示出圆形凹陷,这些凹陷代表了在胞吐作用期间与质膜融合的分泌颗粒膜。这些凹陷通常含有正在向细胞外空间挤出的颗粒核心物质。一些胞吐开口周围的膜显示出膜内颗粒(平均直径8纳米)数量减少,而在其他地方这些颗粒在断裂面上数量更多且分布均匀。内吞位点表现为较小的质膜内陷,并伴有膜内颗粒。此外,这种内陷通常含有大颗粒(平均直径12纳米),在膜小叶的正面观中呈簇状出现。定量分析表明,禁水大鼠腺体中胞吐图像的数量显著增加。与此同时,单位膜面积内吞图像的数量以及大颗粒簇的数量也增加了。这些观察结果表明,在神经垂体中,可以从形态上区分胞吐作用和内吞作用,并且这两个过程可以进行定量评估。

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