Machová Eva, O'Regan Seana, Newcombe Jia, Meunier François-Marie, Prentice Joanna, Dove Rosamund, Lisá Vera, Dolezal Vladimír
Institute of Physiology, Academy of Sciences of the Czech Republic, Prague, Czech Republic.
J Neurochem. 2009 Aug;110(4):1297-309. doi: 10.1111/j.1471-4159.2009.06218.x. Epub 2009 Jun 10.
Choline is an essential nutrient necessary for synthesis of membrane phospholipids, cell signalling molecules and acetylcholine. The aim of this study was to detect and characterize the choline transporter-like 1 (CTL1/SLC44A1) protein in CNS tissues and the hybrid neuroblastoma x glioma cell line NG108-15, which synthesizes acetylcholine and has high affinity choline transport but does not express the cholinergic high affinity choline transporter 1. The presence of CTL1 protein in NG108-15 cells was confirmed using our antibody G103 which recognizes the C-terminal domain of human CTL1. Three different cognate small interfering RNAs were used to decrease CTL1 mRNA in NG108-15 cells, causing lowered CTL1 protein expression, choline uptake and cell growth. None of the small interfering RNAs influenced carnitine transport, demonstrating the absence of major non-specific effects. In parental C6 cells knockdown of CTL1 also reduced high affinity choline transport. Our results support the concept that CTL1 protein is necessary for the high affinity choline transport which supplies choline for cell growth. The presence of CTL1 protein in rat and human CNS regions, where it is found in neuronal, glial and endothelial cells, suggests that malfunction of this transporter could have important implications in nervous system development and repair following injury, and in neurodegenerative diseases.
胆碱是合成膜磷脂、细胞信号分子和乙酰胆碱所必需的一种必需营养素。本研究的目的是检测并表征中枢神经系统组织以及杂交神经母细胞瘤x胶质瘤细胞系NG108-15中的胆碱转运体样1(CTL1/SLC44A1)蛋白,该细胞系能合成乙酰胆碱且具有高亲和力胆碱转运能力,但不表达胆碱能高亲和力胆碱转运体1。使用我们识别人类CTL1 C末端结构域的抗体G103证实了NG108-15细胞中CTL1蛋白的存在。使用三种不同的同源小干扰RNA来降低NG108-15细胞中的CTL1 mRNA,导致CTL1蛋白表达、胆碱摄取和细胞生长降低。没有一种小干扰RNA影响肉碱转运,表明不存在主要的非特异性效应。在亲本C6细胞中,CTL1的敲低也降低了高亲和力胆碱转运。我们的结果支持这样的概念,即CTL1蛋白对于为细胞生长提供胆碱的高亲和力胆碱转运是必需的。在大鼠和人类中枢神经系统区域的神经元、神经胶质细胞和内皮细胞中发现了CTL1蛋白,这表明该转运体功能异常可能对神经系统发育、损伤后的修复以及神经退行性疾病具有重要影响。