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培养的小鼠腹腔巨噬细胞中大分子内吞途径及溶酶体转移的时间顺序。辣根过氧化物酶和铁蛋白的双重标记实验。

Endocytic pathways and time sequence of lysosomal transfer of macromolecules in cultured mouse peritoneal macrophages. Double-labeling experiments with horseradish peroxidase and ferritin.

作者信息

Thyberg J, Hedin U, Stenseth K

出版信息

Cell Tissue Res. 1985;241(2):299-303. doi: 10.1007/BF00217174.

Abstract

A double-labeling protocol was used to study endocytic pathways and lysosomal transfer of exogenous macromolecules in cultured mouse peritoneal macrophages. After pulse-chase labeling of lysosomes with horseradish peroxidase (visualized cytochemically), the cells were exposed to native, anionic ferritin for 0-45 min at 37 degrees C and then analysed by transmission electron microscopy. The results show that ferritin binds to the plasma membrane, accumulates in coated pits, and is rapidly taken up in small, smooth-surfaced endocytic vesicles. The latter carry the ferritin molecules directly to lysosomes, recognized by their peroxidase labeling, or fuse with each other to form larger endocytic vacuoles (endosomes) which in turn fuse with and empty their content into lysosomes. The first signs of transfer of ferritin into the lysosomes were seen after 5-10 min of exposure and after 25-30 min most of the lysosomes were labeled. Union of ferritin-labeled and other lysosomes was also noted, suggesting that the contents of the lysosomes were spread within the lysosomal compartment by fusion-fission processes. It is concluded that a multiplicity of structures is involved in the uptake and intracellular transport of exogenous macromolecules in macrophages and that the time sequence of lysosomal transfer of the interiorized material is highly variable.

摘要

采用双标记法研究培养的小鼠腹腔巨噬细胞中外源大分子的内吞途径和溶酶体转运。在用辣根过氧化物酶对溶酶体进行脉冲追踪标记(通过细胞化学方法观察)后,将细胞在37℃下与天然阴离子铁蛋白接触0 - 45分钟,然后通过透射电子显微镜进行分析。结果表明,铁蛋白与质膜结合,积聚在被膜小窝中,并迅速被小的、表面光滑的内吞小泡摄取。后者将铁蛋白分子直接运送到通过过氧化物酶标记识别的溶酶体,或相互融合形成更大的内吞液泡(内体),内体再与溶酶体融合并将其内容物排空到溶酶体中。在接触5 - 10分钟后可看到铁蛋白转运到溶酶体的最初迹象,25 - 30分钟后大多数溶酶体被标记。还注意到铁蛋白标记的溶酶体与其他溶酶体的融合,这表明溶酶体的内容物通过融合 - 裂变过程在溶酶体区室内扩散。得出的结论是,巨噬细胞中外源大分子的摄取和细胞内转运涉及多种结构,内化物质溶酶体转运的时间顺序变化很大。

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