首页> 美国卫生研究院文献>The Journal of Physiology >Influence of GABA-gated bicarbonate conductance on potential current and intracellular chloride in crayfish muscle fibres.
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Influence of GABA-gated bicarbonate conductance on potential current and intracellular chloride in crayfish muscle fibres.

机译:GABA门控碳酸氢盐电导率对小龙虾肌肉纤维中电位电流和细胞内氯化物的影响。

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摘要

1. The effects of gamma-aminobutyric acid (GABA) on membrane potential and conductance as well as on the intracellular Cl- activity (aiCl) and intracellular pH (pHi) were studied in crayfish muscle fibres using a three-microelectrode voltage clamp and ion-selective microelectrodes. In the presence of CO2-HCO3-, the intracellular HCO3- activity (aiHCO3) was estimated from pHi. 2. In a nominally HCO3(-)-free solution, a near-saturating concentration of GABA (0.2 mM) produced a marked increase in membrane conductance but little change in potential. In a solution containing 30 mM-HCO3- (equilibrated with 5% CO2 + 95% air; pH 7.4), the GABA-induced increase in conductance was associated with a depolarization of about 15 mV, with an increase in aiCl and with a decrease in aiHCO3. All these effects were blocked by picrotoxin (PTX). The depolarizing action of GABA was augmented following depletion of extracellular and intracellular Cl-. 3. The GABA-induced increase in aiCl which took place in the presence of HCO3- was blocked by clamping the membrane potential at its resting level. This indicates that the increase in aiCl was due to passive redistribution of Cl-. In both the presence and absence of HCO3-, the GABA-activated transmembrane flux of Cl- showed reversal at the level of the resting potential, which indicates that under steady-state conditions the Cl- equilibrium potential (ECl) is identical to the resting potential. 4. In a Cl(-)-free, 30 mM-HCO3(-)-containing solution, 0.5 mM-GABA produced a PTX-sensitive increase in conductance which amounted to 15% of the conductance activated in the presence of Cl-. In the absence of both Cl- and HCO3-, the respective figure was 2.8%. Assuming constant-field conditions, the conductance data yielded a permeability ratio PHCO3/PCl of 0.42 for the GABA-activated channels. 5. In a Cl(-)-containing, HCO3(-)-free solution, the reversal potential of the GABA-activated current (EGABA) was, by about 1 mV, less negative than the resting membrane potential (RP). In a solution containing Cl- and 30 mM-HCO3-, EGABA-RP was 12 mV. Simultaneous measurements of EGABA, aiCl and aiHCO3 (pHi) gave a PHCO3/PCl value of 0.33. 6. In a Cl(-)-free, HCO3(-)-containing solution EGABA was close to the HCO3- equilibrium potential (EHCO3) and an experimental acidosis which produced a negative shift in EHCO3 was associated with a similar shift in EGABA.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.使用三电极电压钳和离子法研究了小龙虾肌肉纤维中γ-氨基丁酸(GABA)对膜电位和电导以及对细胞内Cl活性(aiCl)和细胞内pH(pHi)的影响。选择性微电极。在存在CO2-HCO3-的情况下,根据pHi估算细胞内HCO3-的活性(aiHCO3)。 2.在名义上不含HCO3(-)的溶液中,接近饱和的GABA(0.2 mM)浓度可使膜电导显着增加,但电位变化很小。在含有30 mM-HCO3-(用5%CO2 + 95%空气平衡; pH 7.4平衡)的溶液中,GABA诱导的电导增加与去极化约15 mV,aiCl的增加和减少有关。在aiHCO3中。所有这些作用均被微毒素(PTX)阻断。耗尽细胞外和细胞内Cl-后,GABA的去极化作用增强。 3.通过将膜电位钳制在其静止水平来阻止在HCO 3存在下发生的GABA诱导的aiCl的增加。这表明aiCl的增加是由于Cl-的被动重新分布。在存在和不存在HCO3-的情况下,GABA激活的Cl-跨膜通量在静息电位水平上都发生了逆转,这表明在稳态条件下,Cl-平衡电位(EC1)与静息水平相同。潜在。 4.在不含Cl(-)的30 mM-HCO3(-)溶液中,0.5 mM-GABA产生PTX敏感的电导增加,相当于在Cl-存在下活化的电导的15%。在没有Cl-和HCO3-的情况下,各自的数字为2.8%。假设为恒定场条件,则电导数据得出的GABA激活通道的渗透率PHCO3 / PC1为0.42。 5.在含Cl(-),不含HCO3(-)的溶液中,GABA激活电流(EGABA)的逆向电势大约比静止膜电势(RP)低约1 mV。在含有Cl-和30 mM-HCO3-的溶液中,EGABA-RP为12 mV。同时测量EGABA,aiCl和aiHCO3(pHi),得出PHCO3 / PC1值为0.33。 6.在不含Cl(-)的含HCO3(-)的溶液中,EGABA接近HCO3-平衡电位(EHCO3),而实验性酸中毒导致EHCO3产生负移,与EGABA的相类似移相关。 (摘要以400字截断)

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