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GABA(A)受体的质子敏感性与受体亚基组成相关。

Proton sensitivity of the GABA(A) receptor is associated with the receptor subunit composition.

作者信息

Krishek B J, Amato A, Connolly C N, Moss S J, Smart T G

机构信息

School of Pharmacy, Department of Pharmacology, London, UK.

出版信息

J Physiol. 1996 Apr 15;492 ( Pt 2)(Pt 2):431-43. doi: 10.1113/jphysiol.1996.sp021319.

Abstract
  1. Modulation of GABA(A) receptors by external H(+) was examined in cultured rat sympathetic neurones, and in Xenopus laevis oocytes and human embryonic kidney (HEK) cells expressing recombinant GABA(A) receptors composed of combinations of alpha 1, beta 1, beta 2, gamma 2S and delta subunits. 2. Changing the external pH from 7.4 reduced GABA-activated currents in sympathetic neurones. pH titration of the GABA-induced current was fitted with a pH model which predicted that H(+) interact with two sites (PK(a) values of 6.4 and 7.2). 3. For alpha 1 beta 1 GABA(A) receptors, low external pH (< 7.4) enhanced responses to GABA. pH titration predicted the existence of two sites with PK(a) values of 6.6 and 7.5. The GABA concentration-response curve was shifted to the left by low pH and non-competitively inhibited at high pH (> 7.4). 4. alpha 1 beta 1 gamma 2S receptor constructs were not affected by external pH, whereas exchanging the beta 1 subunit for beta 2 conferred a sensitivity to pH, with predicted PK(a) values of 5.16 and 9.44. 5. Low pH enhanced the responses to GABA on alpha 1 beta 1 delta subunits, whilst high pH caused an inhibition (PK(a) values of 6.6 and 9.9). The GABA concentration-response curves were enhanced (pH 5.4) or reduced (pH 9.4) with no changes in the GABA EC(50). 6. Immunoprecipitation with subunit and epitope-specific antisera to alpha 1, beta 1 and delta subunits demonstrated that these subunits could co-assemble in cell membranes. 7. Expression of alpha 1 beta 1 gamma 2S delta constructs resulted in a 'bell-shaped' pH titration relationship. Increasing or decreasing external pH inhibited the responses to GABA. 8. The pH sensitivity of recombinant GABA(A) receptors expressed in HEK cells was generally in accordance with data accrued from Xenopus oocytes. However, rapid application of GABA to alpha 1 beta 1 constructs at high pH (> 7.4) caused an increased peak and reduced steady-state current, with a correspondingly increased rate of desensitization. 9. Modulation of GABA(A) receptor function was apparently unaffected by the internal pH. Moreover, pH values between 5 and 9.5 did not significantly affect the charge distribution on the zwitterionic GABA molecules. 10. In conclusion, this study demonstrates that external pH can either enhance, have little effect, or reduce GABA-activated responses, and this is apparently dependent on the receptor subunit composition. The potential importance of H(+) sensitivity of GABA(A) receptors is discussed.
摘要
  1. 在培养的大鼠交感神经元、表达由α1、β1、β2、γ2S和δ亚基组合而成的重组GABA(A)受体的非洲爪蟾卵母细胞和人胚肾(HEK)细胞中,研究了细胞外H(+)对GABA(A)受体的调节作用。2. 将细胞外pH从7.4改变会降低交感神经元中GABA激活的电流。GABA诱导电流的pH滴定符合一个pH模型,该模型预测H(+)与两个位点相互作用(pK(a)值分别为6.4和7.2)。3. 对于α1β1 GABA(A)受体,低细胞外pH(<7.4)增强了对GABA的反应。pH滴定预测存在两个pK(a)值分别为6.6和7.5的位点。GABA浓度-反应曲线在低pH时向左移动,在高pH(>7.4)时受到非竞争性抑制。4. α1β1γ2S受体构建体不受细胞外pH影响,而将β1亚基换成β2则赋予了对pH的敏感性,预测的pK(a)值为5.16和9.44。5. 低pH增强了α1β1δ亚基对GABA的反应,而高pH则导致抑制(pK(a)值为6.6和9.9)。GABA浓度-反应曲线在pH 5.4时增强,在pH 9.4时降低,而GABA的EC(₅₀)没有变化。6. 用针对α1、β1和δ亚基的亚基和表位特异性抗血清进行免疫沉淀表明,这些亚基可以在细胞膜中共组装。7. α1β1γ2Sδ构建体的表达导致了一种“钟形”pH滴定关系。增加或降低细胞外pH会抑制对GABA的反应。8. 在HEK细胞中表达的重组GABA(A)受体的pH敏感性通常与从非洲爪蟾卵母细胞获得的数据一致。然而,在高pH(>7.4)下快速向α1β1构建体施加GABA会导致峰值电流增加和稳态电流降低,脱敏速率相应增加。9. GABA(A)受体功能的调节显然不受细胞内pH的影响。此外,5至9.5之间的pH值对两性离子GABA分子上的电荷分布没有显著影响。10. 总之,本研究表明细胞外pH可以增强、几乎没有影响或降低GABA激活的反应,这显然取决于受体亚基组成。讨论了GABA(A)受体对H(+)敏感性的潜在重要性。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4778/1158838/f18d5cce5059/jphysiol00294-0127-a.jpg

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