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含有尼曼-匹克C1蛋白的细胞器的动态运动:NPC1参与晚期内吞事件。

Dynamic movements of organelles containing Niemann-Pick C1 protein: NPC1 involvement in late endocytic events.

作者信息

Ko D C, Gordon M D, Jin J Y, Scott M P

机构信息

Departments of Developmental Biology and Genetics, Howard Hughes Medical Institute, Beckman Center B300, Stanford University School of Medicine, Stanford, California 94305, USA.

出版信息

Mol Biol Cell. 2001 Mar;12(3):601-14. doi: 10.1091/mbc.12.3.601.

Abstract

People homozygous for mutations in the Niemann-Pick type C1 (NPC1) gene have physiological defects, including excess accumulation of intracellular cholesterol and other lipids, that lead to drastic neural and liver degeneration. The NPC1 multipass transmembrane protein is resident in late endosomes and lysosomes, but its functions are unknown. We find that organelles containing functional NPC1-fluorescent protein fusions undergo dramatic movements, some in association with extending strands of endoplasmic reticulum. In NPC1 mutant cells the NPC1-bearing organelles that normally move at high speed between perinuclear regions and the periphery of the cell are largely absent. Pulse-chase experiments with dialkylindocarbocyanine low-density lipoprotein showed that NPC1 organelles function late in the endocytic pathway; NPC1 protein may aid the partitioning of endocytic and lysosomal compartments. The close connection between NPC1 and the drug U18666A, which causes NPC1-like organelle defects, was established by rescuing drug-treated cells with overproduced NPC1. U18666A inhibits outward movements of NPC1 organelles, trapping membranes and cholesterol in perinuclear organelles similar to those in NPC1 mutant cells, even when cells are grown in lipoprotein-depleted serum. We conclude that NPC1 protein promotes the creation and/or movement of particular late endosomes, which rapidly transport materials to and from the cell periphery.

摘要

尼曼-匹克C1型(NPC1)基因突变的纯合子个体存在生理缺陷,包括细胞内胆固醇和其他脂质过度积累,这会导致严重的神经和肝脏退化。NPC1多跨膜蛋白定位于晚期内体和溶酶体中,但其功能尚不清楚。我们发现,含有功能性NPC1-荧光蛋白融合体的细胞器会发生剧烈运动,其中一些运动与内质网延伸的链相关。在NPC1突变细胞中,通常在核周区域和细胞周边之间高速移动的携带NPC1的细胞器基本不存在。用二烷基吲哚羰花青低密度脂蛋白进行的脉冲追踪实验表明,NPC1细胞器在胞吞途径后期发挥作用;NPC1蛋白可能有助于胞吞和溶酶体区室的划分。通过用过量表达的NPC1拯救药物处理的细胞,建立了NPC1与导致类似NPC1细胞器缺陷的药物U18666A之间的紧密联系。即使细胞在脂蛋白缺乏的血清中生长,U18666A也会抑制NPC1细胞器的向外运动,将膜和胆固醇捕获在类似于NPC1突变细胞中的核周细胞器中。我们得出结论,NPC1蛋白促进特定晚期内体的形成和/或运动,这些晚期内体可快速地将物质运输到细胞周边和从细胞周边运输回来。

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