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小鼠肝脏中自噬泡和溶酶体膜上的膜内颗粒与制霉菌素标记

Intramembrane particles and filipin labelling on the membranes of autophagic vacuoles and lysosomes in mouse liver.

作者信息

Punnonen E L, Pihakaski K, Mattila K, Lounatmaa K, Hirsimäki P

机构信息

Department of Cell Biology, University of Jyväskylä, Finland.

出版信息

Cell Tissue Res. 1989 Nov;258(2):269-76. doi: 10.1007/BF00239447.

Abstract

Morphologically detectable protein (intramembrane particles) and cholesterol (filipin labelling) in the membranes of autophagic vacuoles and lysosomes were studied in mouse hepatocytes using thin-section and freeze-fracture electron microscopy. Both isolated autophagic vacuoles and lysosomes, and intact tissue blocks were used due to the facts (i) that lysosomes are difficult to recognize in freeze-fracture replicas of intact hepatocytes, and (i) that filipin penetration into the tissue blocks is unsatisfactory. Intramembrane particle density was low in the membranes of early autophagic vacuoles (defined as round-shaped vacuoles in which an inner membrane parallel with the outer limiting membrane was clearly visible). The lysosomal membranes contained considerably more intramembrane particles. Particle-rich lysosomes or other vesicles were observed to fuse with the early autophagic vacuoles. The membranes of nascent autophagic vacuoles with morphologically intact contents were usually not labelled by filipin, whereas the membranes of all other autophagic vacuoles and lysosomes were heavily labelled. The increased cholesterol in the membranes of slightly older autophagic vacuoles is presumably derived from cholesterol-rich lysosomes or other vesicles fusing with the vacuoles and from the degrading organelles inside the autophagic vacuoles.

摘要

利用超薄切片和冷冻蚀刻电子显微镜技术,在小鼠肝细胞中研究了自噬泡和溶酶体膜上形态学可检测的蛋白质(膜内颗粒)和胆固醇(制霉菌素标记)。由于以下事实,使用了分离的自噬泡和溶酶体以及完整的组织块:(i)在完整肝细胞的冷冻蚀刻复制品中难以识别溶酶体,以及(ii)制霉菌素渗入组织块的效果不理想。早期自噬泡(定义为圆形泡,其中与外限制膜平行的内膜清晰可见)的膜内颗粒密度较低。溶酶体膜含有更多的膜内颗粒。观察到富含颗粒的溶酶体或其他小泡与早期自噬泡融合。内容物形态完整的新生自噬泡膜通常不被制霉菌素标记,而所有其他自噬泡和溶酶体的膜则被大量标记。稍老的自噬泡膜中胆固醇的增加可能来自与自噬泡融合的富含胆固醇的溶酶体或其他小泡,以及自噬泡内正在降解的细胞器。

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