Zhang M, Sun M, Dwyer N K, Comly M E, Patel S C, Sundaram R, Hanover J A, Blanchette-Mackie E J
Lipid Cell Biology Section, Laboratory of Cell Biochemistry and Biology, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892, USA.
Acta Paediatr Suppl. 2003 Dec;92(443):63-73; discussion 45. doi: 10.1111/j.1651-2227.2003.tb00224.x.
The cellular location of Niemann-Pick C2 protein (NPC2) in cultured human fibroblasts and Chinese hamster ovary cells was examined immunocytochemically and in living cells by expression of a functional red fluorescent protein chimeric analogue.
NPC2 is present in the lysosomes of both cholesterol-depleted and -replenished cells, unlike Niemann-Pick C1 protein (NPC1) which is recruited to late endosomes only upon uptake of low-density lipoprotein. With mobilization of cholesterol from lysosomes, immunocytochemical detection of NPC2 in lysosomes is greatly diminished, whereas NPC1 remains in the late endosomal compartment. We found a partial overlap in the trafficking and organellar sites of accumulation of NPC2 and NPC1. In living cells, NPC2 traffics with NPC1 in late endosomal tubules. However, in contrast to NPC1, which remains either in late endosomal vesicles and tubules or at the peripheries of cholesterol-laden lysosomes, NPC2 moves into the central core of lysosomes. Glycolipid analysis reveals that, in contrast to null mutant NPC1 cells, which accumulate GM2 ganglioside only at the plasma membrane, with no endocytic storage, absence of NPC2 protein in null mutant NPC2 cells does not block internalization of GM2 into endocytic vesicles. This difference in the cellular distribution of GM2 in NPC1 and NPC2 null mutants is the first report of a variation in the phenotypic expression of these genotypically distinct lesions.
We speculate that while NPC1 may play a major role in the sorting of glycolipids as well as cholesterol within the late endosomes, NPC2 primarily plays a role in the egress of cholesterol and, potentially, glycolipids from lysosomes. These proteins appear not to be integrated into a tightly bound biological complex, but rather represent separate functional entities that complement each other.
通过免疫细胞化学方法以及利用功能性红色荧光蛋白嵌合类似物在活细胞中表达,研究了尼曼-皮克C2蛋白(NPC2)在培养的人成纤维细胞和中国仓鼠卵巢细胞中的细胞定位。
与仅在摄取低密度脂蛋白时才被募集到晚期内体的尼曼-皮克C1蛋白(NPC1)不同,NPC2存在于胆固醇耗尽和补充后的细胞的溶酶体中。随着胆固醇从溶酶体中动员出来,溶酶体中NPC2的免疫细胞化学检测大大减少,而NPC1仍保留在晚期内体区室中。我们发现NPC2和NPC1在运输和细胞器积累位点存在部分重叠。在活细胞中,NPC2与NPC1在晚期内体小管中一起运输。然而,与NPC1不同,NPC1要么保留在晚期内体囊泡和小管中,要么位于富含胆固醇的溶酶体周围,而NPC2则进入溶酶体的中央核心。糖脂分析表明,与仅在质膜积累GM2神经节苷脂而没有内吞储存的NPC1基因敲除突变体细胞不同,NPC2基因敲除突变体细胞中NPC2蛋白的缺失并不阻止GM2进入内吞囊泡。NPC1和NPC2基因敲除突变体中GM2细胞分布的这种差异是这些基因型不同病变表型表达变化的首次报道。
我们推测,虽然NPC1可能在晚期内体中糖脂以及胆固醇的分选过程中起主要作用,但NPC2主要在胆固醇以及可能的糖脂从溶酶体中流出的过程中起作用。这些蛋白质似乎没有整合到紧密结合的生物复合物中,而是代表相互补充的独立功能实体。