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首页> 外文期刊>Journal of Neurophysiology >Effect of extracellular pH on GABA-activated current in rat recombinant receptors and thin hypothalamic slices.
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Effect of extracellular pH on GABA-activated current in rat recombinant receptors and thin hypothalamic slices.

机译:细胞外pH对大鼠重组受体和下丘脑薄片中GABA激活电流的影响。

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摘要

We studied the effects of extracellular pH (pHo) on gamma-aminobutyric acid (GABA)-mediated Cl- current in rat hypothalamic neurons and recombinant type-A GABA (GABA(A)) receptors stably expressed in human embryonic kidney cells (HEK 293), using whole cell and outside-out patch-clamp recordings. In alpha3beta2gamma2s receptors, acidic pH decreased, whereas alkaline pH increased the response to GABA in a reversible and concentration-dependent manner. Acidification shifted the GABA concentration-response curve to the right, significantly increasing the EC50 for GABA without appreciably changing the slope or maximal current induced by GABA. We obtained similar effects of pH in alpha1beta2gamma2 receptors and in GABA-activated currents recorded from thin hypothalamic brain slices. In outside-out patches recorded from alpha3beta2gamma2 recombinant receptors, membrane patches were exposed to 5 microM GABA at control (7.3), acidic (6.4), or alkaline (8.4) pH. GABA activated main and subconductance states of 24 and 16 pS, respectively, in alpha3beta2gamma2 receptors. Alkaline pH(o) increased channel opening frequency and decreased the duration of the long closed state, resulting in an increase in open probability (from 0.0801 +/- 0.015 in pH 7.3 to 0.138 +/- 0.02 in pH 8.4). Exposure of the channels to acidic pH(o) had the opposite effects on open probability (decreased to 0.006 +/- 0.0001). Taken together, our results indicate that the function of GABA(A) receptors is modulated by extracellular pH. The proton effect is similar in recombinant and native receptors and is dependent on GABA concentration. In addition, the effect appears to be independent of the alpha-subunit isoform, and is due to the ability of H+ to alter the frequency of channel opening. Our findings indicate that GABAergic signaling in the CNS may be significantly altered during conditions that increase or decrease pH.
机译:我们研究了细胞外pH(pHo)对大鼠下丘脑神经元中γ-氨基丁酸(GABA)介导的Cl-电流和在人胚肾细胞中稳定表达的重组A型GABA(GABA(A))受体的影响(HEK 293 ),使用整个单元格和外在的膜片钳录音。在alpha3beta2gamma2s受体中,酸性pH降低,而碱性pH以可逆和依赖浓度的方式增加对GABA的响应。酸化使GABA浓度-响应曲线向右移动,从而显着提高了GABA的EC50,而没有明显改变GABA引起的斜率或最大电流。我们获得了类似的pH值在alpha1beta2gamma2受体和下丘脑薄脑片记录的GABA激活电流中的作用。在从alpha3beta2gamma2重组受体记录的外向内贴剂中,将膜贴剂在对照(7.3),酸性(6.4)或碱性(8.4)pH下暴露于5 microM GABA。 GABA在alpha3beta2gamma2受体中分别激活了24和16 pS的主导和次导状态。碱性pH(o)增加了通道打开频率并减少了长时间关闭状态的持续时间,导致打开可能性增加(从pH 7.3的0.0801 +/- 0.015到pH 8.4的0.138 +/- 0.02)。通道暴露于酸性pH(o)对打开概率具有相反的影响(降低至0.006 +/- 0.0001)。两者合计,我们的结果表明,GABA(A)受体的功能受细胞外pH调节。质子效应在重组受体和天然受体中相似,并且取决于GABA浓度。另外,该作用似乎独立于α-亚基同种型,并且归因于H +改变通道开放频率的能力。我们的发现表明,在增加或降低pH的条件下,中枢神经系统中的GABA能信号可能会发生明显变化。

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