Krishek B J, Smart T G
Department of Pharmacology, The School of Pharmacy, 29-39 Brunswick Square, London WC1N 1AX, UK.
J Physiol. 2001 Jan 15;530(Pt 2):219-33. doi: 10.1111/j.1469-7793.2001.0219l.x.
The effect of GABAA receptor development in culture on the modulation of GABA-induced currents by external H+ was examined in cerebellar granule cells using whole-cell and single-channel recording. Equilibrium concentration-response curves revealed a lower potency for GABA between 11 and 12 days in vitro (DIV) resulting in a shift of the EC50 from 10.7 to 2.4 uM. For granule cells before 11 DIV, the peak GABA-activated current was inhibited at low external pH and enhanced at high pH with a pKa of 6.6. For the steady-state response, low pH was inhibitory with a pKa of 5.56. After 11 DIV, the peak GABA-activated current was largely pH insensitive; however, the steady-state current was potentiated at low pH with a pKa of 6.84. Single GABA-activated ion channels were recorded from outside-out patches of granule cell bodies. At pH 5.4-9.4, single GABA channels exhibited multiple conductance states occurring at 22-26, 16-17 and 12-14 pS. The conductance levels were not significantly altered over the time period of study, nor by changing the external H+ concentration. Two exponential functions were required to fit the open-time frequency histograms at both early (< 11 DIV) and late (> 11 DIV) development times at each H+ concentration. The short and long open time constants were unaffected either by the extracellular H+ concentration or by neuronal development. The distribution of all shut times was fitted by the sum of three exponentials designated as short, intermediate and long. At acidic pH, the long shut time constant decreased with development as did the relative contribution of these components to the overall distribution. This was concurrent with an increase in the mean probability of channel opening. In conclusion, this study demonstrates in cerebellar granule cells that external pH can either reduce, have no effect on, or enhance GABA-activated responses depending on the stage of development, possibly related to the subunit composition of the GABAA receptors. The mode of interaction of H+ at the single-channel level and implications of such interactions at cerebellar granule cell GABAA receptors are discussed.
利用全细胞和单通道记录技术,在小脑颗粒细胞中研究了体外培养时GABAA受体发育对细胞外H⁺调节GABA诱导电流的影响。平衡浓度-反应曲线显示,在体外培养11至12天(DIV)期间,GABA的效力较低,导致半数有效浓度(EC50)从10.7 μM变为2.4 μM。对于11 DIV之前的颗粒细胞,在低细胞外pH值时,GABA激活的峰值电流受到抑制,而在高pH值时增强,其解离常数(pKa)为6.6。对于稳态反应,低pH值具有抑制作用,pKa为5.56。11 DIV之后,GABA激活的峰值电流在很大程度上对pH值不敏感;然而,稳态电流在低pH值时增强,pKa为6.84。从颗粒细胞体的外侧向外膜片记录单个GABA激活的离子通道。在pH 5.4 - 9.4时,单个GABA通道呈现出22 - 26、16 - 17和12 - 14 pS的多种电导状态。在研究期间,电导水平没有显著变化,改变细胞外H⁺浓度也不会使其改变。在每个H⁺浓度下,早期(< 11 DIV)和晚期(> 11 DIV)发育阶段的开放时间频率直方图都需要用两个指数函数来拟合。短和长的开放时间常数不受细胞外H⁺浓度或神经元发育的影响。所有关闭时间的分布由指定为短、中、长的三个指数之和拟合。在酸性pH值下,长关闭时间常数随着发育而降低,这些成分在总体分布中的相对贡献也降低。这与通道开放的平均概率增加同时发生。总之,本研究表明在小脑颗粒细胞中,细胞外pH值可根据发育阶段降低、不影响或增强GABA激活的反应,这可能与GABAA受体的亚基组成有关。讨论了H⁺在单通道水平的相互作用方式以及这种相互作用对小脑颗粒细胞GABAA受体的影响。