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Flux coupling in a neuronal glutamate transporter.

机译:神经元谷氨酸转运蛋白中的助焊剂偶联。

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Synaptic transmission is commonly terminated by diffusion and reuptake of neurotransmitter from the synaptic cleft. Glutamate reuptake prevents neurotoxicity and sets the lower limit for the concentration of extracellular glutamate, so it is important to understand the thermodynamics of this process. Here we use voltage clamping with a pH-sensitive fluorescent dye to monitor electrical currents and pH changes associated with flux of glutamate mediated by the human neuronal glutamate transporter EAAT3. In contrast to a previous model, we find that three sodium ions and one proton are cotransported with each glutamate ion into the cell, while one potassium ion is transported out of the cell. This coupling can support a transmembrane glutamate concentration gradient ([Glu]in/[Glu]out) exceeding 10(6) under equilibrium conditions, and would allow the transporter to continue removing glutamate over a wide range of ionic conditions.
机译:突触传递通常通过突触间隙中神经递质的扩散和再摄取而终止。谷氨酸盐的再摄取可防止神经毒性并设定细胞外谷氨酸盐浓度的下限,因此了解此过程的热力学很重要。在这里,我们使用带有pH敏感荧光染料的电压钳制来监视电流和与人神经元谷氨酸转运蛋白EAAT3介导的谷氨酸通量相关的pH变化。与以前的模型相反,我们发现三个谷氨酸离子与一个钠离子和一个质子共同转运到细胞中,而一个钾离子被转运出细胞。这种偶联可以在平衡条件下支持超过10(6)的跨膜谷氨酸浓度梯度(G in / G out),并且将允许转运蛋白在广泛的离子条件下继续去除谷氨酸。

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