首页> 美国卫生研究院文献>Biochemical Journal >NPC1L1 (Niemann–Pick C1-like 1) mediates sterol-specific unidirectional transport of non-esterified cholesterol in McArdle-RH7777 hepatoma cells
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NPC1L1 (Niemann–Pick C1-like 1) mediates sterol-specific unidirectional transport of non-esterified cholesterol in McArdle-RH7777 hepatoma cells

机译:NPC1L1(Niemann–Pick C1样1)介导McArdle-RH7777肝癌细胞中非酯化胆固醇的甾醇特异性单向转运

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摘要

Recent evidence suggests that NPC1L1 (Niemann–Pick C1-like 1) is critical for intestinal sterol absorption in mice, yet mechanisms by which NPC1L1 regulates cellular sterol transport are lacking. In the study we used a McArdle-RH7777 rat hepatoma cell line stably expressing NPC1L1 to examine the sterol-specificity and directionality of NPC1L1-mediated sterol transport. As previously described, cholesterol-depletion-driven recycling of NPC1L1 to the cell surface facilitates cellular uptake of non-esterified (free) cholesterol. However, it has no impact on the uptake of esterified cholesterol, indicating free sterol specificity. Interestingly, the endocytic recycling of NPC1L1 was also without effect on β-sitosterol uptake, indicating that NPC1L1 can differentiate between free sterols of animal and plant origin in hepatoma cells. Furthermore, NPC1L1-driven free cholesterol transport was unidirectional, since cellular cholesterol efflux to apolipoprotein A-I, high-density lipoprotein or serum was unaffected by NPC1L1 expression or localization. Additionally, NPC1L1 facilitates mass non-esterified-cholesterol uptake only when it is located on the cell surface and not when it resides intracellularly. Finally, NPC1L1-dependent cholesterol uptake required adequate intracellular K+, yet did not rely on intracellular Ca2+, the cytoskeleton or signalling downstream of protein kinase A, protein kinase C or pertussis-toxin-sensitive G-protein-coupled receptors. Collectively, these findings support the notion that NPC1L1 can selectively recognize non-esterified cholesterol and promote its unidirectional transport into hepatoma cells.
机译:最近的证据表明,NPC1L1(Niemann–Pick C1样1)对于小鼠肠道甾醇的吸收至关重要,但尚缺乏NPC1L1调节细胞固醇转运的机制。在这项研究中,我们使用了稳定表达NPC1L1的McArdle-RH7777大鼠肝癌细胞系来检查NPC1L1介导的固醇转运的固醇特异性和方向性。如前所述,胆固醇消耗驱动的NPC1L1循环到细胞表面促进了细胞对非酯化(游离)胆固醇的摄取。但是,它对酯化胆固醇的摄取没有影响,表明具有游离固醇特异性。有趣的是,NPC1L1的内吞再循环对β-谷甾醇的摄取也没有影响,这表明NPC1L1可以区分动物和植物来源的游离固醇在肝癌细胞中的表达。此外,NPC1L1驱动的自由胆固醇运输是单向的,因为细胞胆固醇向载脂蛋白A-1,高密度脂蛋白或血清的流出不受NPC1L1表达或定位的影响。另外,仅当NPC1L1位于细胞表面时,而不是当其位于细胞内时,它才促进大量非酯化胆固醇的摄取。最后,依赖NPC1L1的胆固醇摄取需要足够的细胞内K + ,但不依赖于细胞内Ca 2 + ,细胞骨架或蛋白激酶A,蛋白激酶C下游的信号传导或对百日咳毒素敏感的G蛋白偶联受体。总的来说,这些发现支持NPC1L1可以选择性识别未酯化的胆固醇并促进其单向转运进入肝癌细胞的观点。

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