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首页> 外文期刊>Japanese Journal of Pharmacology >Pharmacological Characteristics of Choline Transport System in Mouse Cerebral Cortical Neurons in Primary Culture
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Pharmacological Characteristics of Choline Transport System in Mouse Cerebral Cortical Neurons in Primary Culture

机译:小鼠脑皮质神经元原代培养物中胆碱转运系统的药理特性

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References(36) Cited-By(5) The characteristics of [3H]choline transport with high affinity were investigated using primary cultured neurons obtained from the mouse cerebral cortex. [3H]Choline uptake was saturable as a function of extracellular [3H]choline concentration. Analysis by Lineweaver-Burk plot revealed that [3H]choline was transported into neurons by a high affinity transport system with a Km value of 19.8 ± 0.8μM and Vmax value of 0.334 plusmn; 0.022 nmol/mg protein/min. This high affinity transport of [3H]choline was significantly inhibited by the withdrawal of sodium from the incubation medium, incubation at low temperature (4°C) and addition of metabolic inhibitors such as monoiodoacetate. These results indicate that the high affinity [3H]choline uptake in primary cultured neurons is sodium- and energy-dependent. Hemicholinium-3 also showed a competitive inhibition on the [3H]choline transport. Depolarization by high K+ induced an enhancement of the [3H]choline uptake in the presence of Ca2+. The crude synaptosomal fraction obtained from primary cultured neurons possessed approximately forty-fold higher synthesizing activity of [3H]acetylcholine from [3H]choline than that found in the homogenate preparation of cultured neurons. The present results strongly suggest that the primary cultured neurons used in this study possess a sodium- and energy-dependent high-affinity choline uptake system as well as a synthesizing system for acetylcholine. Possible usefulness of these neurons for investigating neuronal uptake of choline and its functional role in the biosynthesis of acetylcholine are also suggested.
机译:参考文献(36)被引用的By(5)使用从小鼠大脑皮层获得的原代培养神经元,研究了[3H]胆碱转运具有高亲和力的特征。 [3H]胆碱的摄取随细胞外[3H]胆碱浓度的变化而饱和。通过Lineweaver-Burk图分析发现[3H]胆碱通过高亲和力转运系统转运到神经元中,Km值为19.8±0.8μM,Vmax值为0.334 plusmn。 0.022 nmol / mg蛋白质/分钟。通过从培养培养基中撤出钠,在低温(4°C)下培养以及添加代谢抑制剂(如单碘乙酸酯),显着抑制了[3H]胆碱的这种高亲和力转运。这些结果表明原代培养的神经元中高亲和力的[3H]胆碱摄取是钠和能量依赖性的。 Hemicholinium-3还显示出对[3H]胆碱转运的竞争性抑制作用。在存在Ca2 +的情况下,高K +引起的去极化诱导[3H]胆碱摄取的增强。从原代培养的神经元获得的粗突触体级分比从培养的神经元的匀浆制备物中发现的具有更高的[3H]乙酰胆碱[3H]乙酰胆碱的合成活性。目前的结果强烈表明,本研究中使用的原代培养神经元具有依赖钠和能量的高亲和力胆碱摄取系统以及乙酰胆碱的合成系统。还提出了这些神经元可能用于研究胆碱的神经元摄取及其在乙酰胆碱生物合成中的功能作用。

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