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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Transport of choline and its relationship to the expression of the organic cation transporters in a rat brain microvessel endothelial cell line (RBE4)
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Transport of choline and its relationship to the expression of the organic cation transporters in a rat brain microvessel endothelial cell line (RBE4)

机译:胆碱的运输及其与大鼠脑微血管内皮细胞系(RBE4)中有机阳离子转运蛋白表达的关系

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摘要

The present study was undertaken to elucidate the functional characteristics of choline uptake and deduce the relationship between choline uptake and the expression of organic cation transporters in the rat brain microvessel endothelial cell line RBE4. Confluent RBE4 cells were found to express a high affinity choline uptake system. The system is Na~+-independent and shows a Michaelis-Menten constant of approx. 20 μM for choline. The choline analogue hemicholinium-3 inhibits choline uptake in these cells with an inhibition constant of approx. 50 μM. The uptake system is also susceptible for inhibition by various organic cations, including 1-methyl-4-phenylpyridinium, 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine, clonidine, procainamide, and tetramethylammonium. The prototypical organic cation tetraethylammonium shows very little affinity for the choline uptake system in these cells. The inhibition of choline uptake by hemicholinium-3 is competitive. Northern analysis and RT-PCR show that these cells do not express the organic cation transporters OCT2 and OCT3. These cells do express, however, low levels of OCT1, but the functional characteristics of choline uptake in these cells are very different from the known properties of choline uptake via OCT1. The Na~+-coupled high affinity choline transporter CHT1 is not expressed in these cells as evidenced by RT-PCR. This corroborates the Na~+-independent nature of choline uptake in these cells. It is concluded that RBE4 cells express an organic cation transporter that is responsible for choline uptake in these cells and that this transporter is not identical to any of the organic cation transporters thus far identified at the molecular level in mammalian cells.
机译:本研究旨在阐明胆碱摄取的功能特性,并推论胆碱摄取与大鼠脑微血管内皮细胞系RBE4中有机阳离子转运蛋白表达之间的关系。发现融合的RBE4细胞表达高亲和力的胆碱摄取系统。该系统不依赖于Na〜+,并且显示出大约为的Michaelis-Menten常数。胆碱为20μM。胆碱类似物hemicholinium-3抑制胆碱在这些细胞中的摄取,其抑制常数约为1。 50微米摄取系统也容易受到各种有机阳离子的抑制,包括1-甲基-4-苯基吡啶鎓,1-甲基-4-苯基-1,2,3,6-四氢吡啶,可乐定,普鲁卡因酰胺和四甲基铵。原型有机阳离子四乙铵对这些细胞中胆碱摄取系统的亲和力很小。 hemicholinium-3对胆碱摄取的抑制是竞争性的。 Northern分析和RT-PCR显示这些细胞不表达有机阳离子转运蛋白OCT2和OCT3。这些细胞确实表达了低水平的OCT1,但是这些细胞中胆碱摄取的功能特性与通过OCT1摄取胆碱的已知特性有很大不同。通过RT-PCR证实,Na +偶联的高亲和力胆碱转运蛋白CHT1在这些细胞中不表达。这证实了这些细胞中胆碱摄取的Na〜+非依赖性性质。结论是,RBE4细胞表达负责这些细胞中胆碱摄取的有机阳离子转运蛋白,并且该转运蛋白与迄今为止在哺乳动物细胞中分子水平上鉴定的任何有机阳离子转运蛋白都不相同。

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