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胶质瘤条件培养基中所含因子诱导克隆大鼠嗜铬细胞瘤细胞(PC12)的胆碱能分化:高亲和力胆碱摄取系统增强及去甲肾上腺素摄取系统减弱。

Cholinergic differentiation of clonal rat pheochromocytoma cells (PC12) induced by factors contained in glioma-conditioned medium: enhancement of high-affinity choline uptake system and reduction of norepinephrine uptake system.

作者信息

Matsuoka I, Satake R, Kurihara K

出版信息

Brain Res. 1986 Jan;389(1-2):145-52. doi: 10.1016/0165-3806(86)90182-3.

Abstract

The effects of glioma-conditioned medium (GCM) and factors contained in GCM on the neurochemical differentiation of the PC12 clone of rat pheochromocytoma cells were investigated. The results obtained are as follows. The accumulation of choline into PC12 cells proceeded through two uptake systems with high (Km = 3.20 microM) and low (Km = 65.2 muM) affinities as revealed by least-squares iterative fitting of a substrate-velocity curve to the data. Culturing of PC12 cells in the presence of GCM led to a 5-fold increase in the Vmax value of the high-affinity uptake system without affecting the Km of the high-affinity uptake system. Both Km and Vmax of the low-affinity uptake system were unaffected by the GCM treatment. The high-affinity choline uptake system in both GCM-treated and untreated PC12 cells was devoid of Na+ dependency and showed low sensitivity to hemicholinium-3. The ratio of [3H]acetylcholine converted from [3H]choline taken up by PC12 cells at 1 muM choline for 1 h was two-fold higher than that by untreated cells. PC12 possess a high-affinity norepinephrine uptake system. Culturing of PC12 cells in the presence of GCM led to a decrease in the rate of uptake of 3 muM norepinephrine to 43% of that in control cells. The 40-K and 10-K fractions isolated by gel filtration of GCM had both abilities to enhance the high-affinity choline uptake system and to suppress the high-affinity norepinephrine uptake system. From these observations it was concluded that GCM contains factors which induce the cholinergic neuronal differentiation of PC12 cells.

摘要

研究了神经胶质瘤条件培养基(GCM)及其所含因子对大鼠嗜铬细胞瘤细胞PC12克隆神经化学分化的影响。所得结果如下。通过将底物-速度曲线进行最小二乘迭代拟合数据发现,胆碱在PC12细胞中的积累通过两个具有高亲和力(Km = 3.20 microM)和低亲和力(Km = 65.2 microM)的摄取系统进行。在GCM存在下培养PC12细胞导致高亲和力摄取系统的Vmax值增加了5倍,而不影响高亲和力摄取系统的Km。低亲和力摄取系统的Km和Vmax均不受GCM处理的影响。GCM处理和未处理的PC12细胞中的高亲和力胆碱摄取系统均不依赖Na +,并且对半胱氨酸-3敏感性较低。在1 microM胆碱存在下,PC12细胞摄取的[3H]胆碱转化为[3H]乙酰胆碱的比例比未处理细胞高两倍。PC12具有高亲和力去甲肾上腺素摄取系统。在GCM存在下培养PC12细胞导致3 microM去甲肾上腺素的摄取速率降至对照细胞的43%。通过GCM凝胶过滤分离的40-K和10-K组分具有增强高亲和力胆碱摄取系统和抑制高亲和力去甲肾上腺素摄取系统的能力。从这些观察结果得出结论,GCM含有诱导PC12细胞胆碱能神经元分化的因子。

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