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Pre-steady-state and reverse transport currents in the GABA transporter GAT1

机译:GABA转运蛋白GAT1中的稳态前和反向转运电流

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摘要

The role of internal substrates in the biophysical properties of the GABA transporter GAT1 has been investigated electrophysiologically in Xenopus oocytes heterologously expressing the cotransporter. Increments in Cl - and/or Na + concentrations caused by intracellular injections did not produce significant effects on the pre-steady-state currents, while a positive shift of the charge-voltage (Q-V) and decay time constant (??)-voltage (??-V) curves, together with a slowing of ?? at positive potentials, was observed following treatments producing cytosolic Cl- depletion. Activation of the reverse transport mode by injections of GABA caused a reduction in the displaced charge. In the absence of external Cl -, a stronger reduction in the displaced charge, together with a significant increase in reverse transport current, was observed. Therefore, complementarity between pre-steady-state and transport currents, observed in the forward mode, is preserved in the reverse mode. All these findings can be qualitatively reproduced by a kinetic scheme in which, in the forward mode, the Cl - ion is released first, after the inward charge movement, while the two Na + ions can be released only after binding of external GABA. In the reverse mode, internal GABA must bind first to the empty transporter, followed by internal Na + and Cl -. ? 2012 the American Physiological Society.
机译:内部底物在GABA转运蛋白GAT1的生物物理特性中的作用已在异源表达cotransporter的非洲爪蟾卵母细胞中进行了电生理学研究。细胞内注射引起的Cl-和/或Na +浓度的增加不会对稳态前电流产生显着影响,而电荷电压(QV)和衰减时间常数(Δε)-电压则发生正向偏移(??-V)曲线,以及??的减慢在产生胞浆Cl-耗竭的治疗后观察到具有正电势的细胞。通过注入GABA激活反向传输模式导致置换电荷减少。在不存在外部Cl-的情况下,观察到置换电荷的更强减少,以及反向传输电流的显着增加。因此,在正向模式下观察到的稳态和​​传输电流之间的互补性在反向模式下得以保持。所有这些发现都可以通过动力学方案进行定性重现,其中在向前模式下,向内电荷移动后首先释放Cl-离子,而只有在外部GABA结合后才能释放两个Na +离子。在反向模式下,内部GABA必须首先结合空的转运蛋白,然后是内部Na +和Cl-。 ? 2012年美国生理学会。

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