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HCT-15人结肠癌细胞系中通过钠依赖性载体介导转运摄取甘油。

Glycerol uptake in HCT-15 human colon cancer cell line by Na(+)-dependent carrier-mediated transport.

作者信息

Fujimoto Nami, Inoue Katsuhisa, Hayashi Yayoi, Yuasa Hiroaki

机构信息

Graduate School of Pharmaceutical Sciences, Nagoya City University, Japan.

出版信息

Biol Pharm Bull. 2006 Jan;29(1):150-4. doi: 10.1248/bpb.29.150.

Abstract

It has recently been suggested that an Na(+)-dependent carrier-mediated transport system is involved in intestinal glycerol absorption. Such a transport system is of general interest as a possible pathway of drug delivery and a target of drug development. However, the Na(+)-dependent mechanism of cellular glycerol uptake has not been fully clarified in the small intestine or in any other organ. The purpose of the present study was to examine glycerol uptake in the HCT-15 human colon cancer cell line, which was found to be able to perform Na(+)-dependent glycerol uptake, to determine the transport characteristics and help identify such glycerol transport systems. The uptake of glycerol in HCT-15 cells was highly saturable with a Michaelis constant of 15.0 microM and a maximum uptake rate of 11.9 pmol/min/mg protein, accompanied by minimal unsaturable transport; it was reduced markedly under Na(+)-free conditions, indicating Na+ requirement. Glycerol uptake was also reduced by 2,4-dinitrophenol, a metabolic inhibitor. These results suggest that a carrier-mediated glycerol transport system, which is Na(+)-dependent and secondarily active, is present in HCT-15 cells. The transport system could be specific for glycerol and some analogous compounds with hydroxyl groups, since glycerol uptake was inhibited by some alcohols and compounds related to glycerol, such as 1,2-propanediol and glycerol 3-phosphpate. However, it may represent a high affinity transport system, which is different from the one in the small intestine, because the Michaelis constant of 15.0 microM is about 50-fold lower than that observed in the rat small intestine. In conclusion, this is the first study to demonstrate an Na(+)-dependent carrier-mediated glycerol transport in an established cell line. This will help in identifying a group of Na(+)-dependent glycerol transport systems and elucidating their transport mechanisms, although the one found in HCT-15 cells in this study seems to be different from one previously found in the rat small intestine.

摘要

最近有人提出,一种依赖钠离子的载体介导转运系统参与肠道甘油吸收。作为一种可能的药物递送途径和药物开发靶点,这样的转运系统具有普遍意义。然而,细胞摄取甘油的钠离子依赖性机制在小肠或其他任何器官中尚未完全阐明。本研究的目的是检测HCT-15人结肠癌细胞系中的甘油摄取情况,该细胞系被发现能够进行依赖钠离子的甘油摄取,以确定其转运特性并有助于识别此类甘油转运系统。HCT-15细胞中甘油的摄取具有高度饱和性,米氏常数为15.0微摩尔,最大摄取速率为11.9皮摩尔/分钟/毫克蛋白质,伴随极少的非饱和转运;在无钠离子条件下摄取明显减少,表明需要钠离子。甘油摄取也被代谢抑制剂2,4-二硝基苯酚降低。这些结果表明,HCT-15细胞中存在一种依赖钠离子且继发活跃的载体介导甘油转运系统。该转运系统可能对甘油和一些具有羟基的类似化合物具有特异性,因为甘油摄取受到一些醇类和与甘油相关的化合物(如1,2-丙二醇和甘油3-磷酸)的抑制。然而,它可能代表一种高亲和力转运系统,与小肠中的不同,因为15.0微摩尔的米氏常数比在大鼠小肠中观察到的低约50倍。总之,这是第一项在已建立的细胞系中证明依赖钠离子的载体介导甘油转运的研究。这将有助于识别一组依赖钠离子的甘油转运系统并阐明其转运机制,尽管本研究中在HCT-15细胞中发现的系统似乎与先前在大鼠小肠中发现的不同。

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