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大鼠纹状体突触体中多巴胺摄取的钠依赖性模型。

A model of the sodium dependence of dopamine uptake in rat striatal synaptosomes.

作者信息

Wheeler D D, Edwards A M, Chapman B M, Ondo J G

机构信息

Department of Physiology, Medical University of South Carolina, Charleston 29425.

出版信息

Neurochem Res. 1993 Aug;18(8):927-36. doi: 10.1007/BF00998279.

Abstract

Initial velocity of uptake of dopamine (DA) has been measured in rat striatal synaptosomes as a function of both [DA] and [Na]. Carrier mediated uptake is totally dependent on external sodium. The data were fitted to a rapid equilibrium model which has been found in previous studies to fit, with appropriate simplification, uptake data for glutamate, GABA, and choline in several brain regions under varying conditions. This model also gives a good fit to the dopamine data. The minimal best fit simplification of this model allows for DA uptake along with two sodium ions and predicts that apparent maximal velocity of uptake should increase with [Na], while the Michaelis-Menten constant should decrease. The minimal best fit model for DA, and a number of kinetic parameters which quantitate the model, are compared to those for the GABA, glutamate, and choline transporters. The results are consistent with a symmetrical, rapid equilibrium model, which has been presented previously for other neurotransmitters and precursors (18). This model offers a unifying basis for understanding the sodium and membrane potential dependence of neurotransmitter transport and the possible participation of transporters in depolarization induced release throughout the CNS.

摘要

已在大鼠纹状体突触体中测量了多巴胺(DA)摄取的初始速度,该速度是[DA]和[Na]的函数。载体介导的摄取完全依赖于细胞外钠。数据被拟合到一个快速平衡模型,在先前的研究中发现,经过适当简化后,该模型可以拟合不同条件下几个脑区中谷氨酸、γ-氨基丁酸(GABA)和胆碱的摄取数据。该模型对多巴胺数据也拟合得很好。该模型的最小最佳拟合简化允许DA与两个钠离子一起摄取,并预测表观最大摄取速度应随[Na]增加,而米氏常数应降低。将DA的最小最佳拟合模型以及一些量化该模型的动力学参数与GABA、谷氨酸和胆碱转运体的模型和参数进行了比较。结果与先前针对其他神经递质和前体提出的对称快速平衡模型一致(18)。该模型为理解神经递质转运对钠和膜电位的依赖性以及转运体在整个中枢神经系统中去极化诱导释放中的可能参与提供了一个统一的基础。

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