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吞噬乳胶珠的四膜虫细胞中吞噬体膜的结构转变。

Structural transformation of the phagosomal membrane in Tetrahymena cells endocytosing latex beads.

作者信息

Batz W, Wunderlich F

出版信息

Arch Microbiol. 1976 Sep 1;109(3):215-50. doi: 10.1007/BF00446631.

Abstract

A model system with a high phagosomal membrane turnover has been developed: During a 45-min period Tetrahymena cells endocytoze 186 latex beads (diameter: 2.02 mum) per average cell; 166 of these beads are then exocytozed in the course of the following 145 min. During the endocytotic phase an average cell is approximated to fabricate 1200 mum2 phagosomal membrane. Freeze-etch electronmicroscopy reveals that both fracture faces of the nascent phagosomal membrane are associated with the typical 85 A-particles in approximately equal numbers. Mature phagosomal membranes, however, show an unequal particle distribution. Smooth areas, smooth areas bordered with a fracture rim, and particle-associated depressions up to a diameter of 130 nm can be observed especially on fracture faces of mature phagosomes in the endocytotic phase. These are discussed with respect to membrane fusion.

摘要

已开发出一种具有高吞噬体膜周转率的模型系统

在45分钟内,平均每个四膜虫细胞内吞186个乳胶珠(直径:2.02μm);其中166个珠子在随后的145分钟内被胞吐。在内吞阶段,平均每个细胞大约制造1200μm²的吞噬体膜。冷冻蚀刻电子显微镜显示,新生吞噬体膜的两个断裂面与典型的85Å颗粒数量大致相等。然而,成熟的吞噬体膜显示出颗粒分布不均。特别是在内吞阶段成熟吞噬体的断裂面上,可以观察到光滑区域、有断裂边缘的光滑区域以及直径达130nm的颗粒相关凹陷。就膜融合对这些现象进行了讨论。

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