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霍乱毒素和GM1神经节苷脂在尼曼-匹克C1缺乏细胞早期内体中的积累。

Accumulation of cholera toxin and GM1 ganglioside in the early endosome of Niemann-Pick C1-deficient cells.

作者信息

Sugimoto Y, Ninomiya H, Ohsaki Y, Higaki K, Davies J P, Ioannou Y A, Ohno K

机构信息

Department of Neurobiology, Tottori University Faculty of Medicine, Yonago 683, Japan.

出版信息

Proc Natl Acad Sci U S A. 2001 Oct 23;98(22):12391-6. doi: 10.1073/pnas.221181998.

Abstract

We investigated intracellular trafficking of GM1 ganglioside in Niemann-Pick C1 (NPC1)-deficient Chinese hamster ovary cells [NPC1(-) cells] by using cholera toxin (CT) as a probe. Both the holotoxin and the B subunit (CTB) accumulated in GM1-enriched intracellular vesicles of NPC1(-) cells. CTB-labeled vesicles contained the early endosome marker Rab5 but not lysosome-associated membrane protein 2 and were not labeled with either Texas red-transferrin or Lysotracker, indicating that they represent early endosomes. Similarly, CT accumulated in intracellular vesicles of human NPC fibroblasts that contained both Rab5 and early endosomal antigen 1. CTB accumulation in NPC1(-) cells was abolished by expression of wild-type NPC1 but not by mutant proteins with a mutation either in the NPC domain or the sterol-sensing domain. A part of these mutant NPC1 proteins expressed in NPC1(-) cells was localized on CTB-labeled vesicles. U18666A treatment of "knock in" cells [NPC1(-) cells that stably expressed wild-type NPC1] caused CTB accumulation similar to that in NPC1(-) cells, and a part of wild-type NPC1was localized on CTB-labeled vesicles in drug-treated cells. Finally, CT tracer experiments in NPC1(-) cells revealed retarded excretion of internalized toxin into the culture medium and an increase in the intracellular release of A subunits. In accordance with the latter result, CT was more effective in stimulating cAMP formation in NPC1(-) than in wild-type cells. These results suggest that transport of CT/GM1 complexes from the early endosome to the plasma membrane depends on the function of NPC1, whereas transport to the Golgi apparatus/endoplasmic reticulum does not.

摘要

我们通过使用霍乱毒素(CT)作为探针,研究了尼曼-匹克C1型(NPC1)缺陷的中国仓鼠卵巢细胞[NPC1(-)细胞]中GM1神经节苷脂的细胞内运输情况。全毒素和B亚基(CTB)均积聚在NPC1(-)细胞中富含GM1的细胞内囊泡中。CTB标记的囊泡含有早期内体标记物Rab5,但不含有溶酶体相关膜蛋白2,并且未被德克萨斯红转铁蛋白或溶酶体追踪染料标记,这表明它们代表早期内体。同样,CT积聚在人NPC成纤维细胞的细胞内囊泡中,这些囊泡同时含有Rab5和早期内体抗原1。野生型NPC1的表达消除了NPC1(-)细胞中CTB的积聚,但在NPC结构域或固醇感应结构域发生突变的突变蛋白则不能消除这种积聚。在NPC1(-)细胞中表达的这些突变NPC1蛋白的一部分定位于CTB标记的囊泡上。用U18666A处理“敲入”细胞[稳定表达野生型NPC1的NPC1(-)细胞]会导致CTB积聚,类似于在NPC1(-)细胞中的积聚,并且在药物处理的细胞中,一部分野生型NPC1定位于CTB标记的囊泡上。最后,在NPC1(-)细胞中进行的CT示踪实验表明,内化毒素向培养基中的排泄延迟,并且A亚基的细胞内释放增加。与后一个结果一致,CT在刺激NPC1(-)细胞中cAMP形成方面比在野生型细胞中更有效。这些结果表明,CT/GM1复合物从早期内体到质膜的运输取决于NPC1的功能,而向高尔基体/内质网的运输则不依赖于NPC1的功能。

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