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电压钳制的大鼠肌球中由闪光激活激动剂开启的乙酰胆碱受体通道的剂量反应。

Dose-response of acetylcholine receptor channels opened by a flash-activated agonist in voltage-clamped rat myoballs.

作者信息

Chabala L D, Gurney A M, Lester H A

出版信息

J Physiol. 1986 Feb;371:407-33. doi: 10.1113/jphysiol.1986.sp015983.

Abstract

Whole-cell or single-channel currents through acetylcholine (ACh) receptor channels were studied in voltage-clamped rat myoballs or in excised membrane patches from myoballs. The recording pipette contained CsCl to suppress outward currents, and tetrodotoxin was used to help suppress Na+ currents. To minimize problems associated with bath applied agonists, myoballs were bathed in a solution containing the inactive (cis) isomer of the photo-isomerizable azobenzene derivative, Bis-Q. Calibrated light flashes of varying intensity were presented to produce concentration jumps of agonist, trans-Bis-Q. The resulting whole-cell current relaxations through ACh channels approach a steady state along an exponential time course, then decline as the newly created agonist diffuses away over the next few seconds. The dose-response relationship was inferred from Hill (double-log) plots for myoballs bathed in 500 nM-cis-Bis-Q at three membrane potentials. At low agonist concentrations (less than 300 nM-trans-Bis-Q), the slope of the Hill plot averaged 1.62 at -150 mV, 1.89 at -100 mV, and 2.05 at +80 mV. These results are consistent with an apparent agonist affinity constant that decreases with membrane depolarization and shifts the responses further down on the dose-response curve. When the myoballs were bathed in higher concentrations of cis-Bis-Q (1.5-20 microM), the slope of the Hill plot was reduced at all membrane potentials, although it was still closer to two at positive potentials. This is expected from the known sigmoid shape of the dose-response relation. The shallow dependence of the Hill slope on agonist concentration suggests the presence of negative cooperativity in the over-all binding of agonist molecules. Following treatment of the membrane with dithiothreitol to reduce disulphide groups, the Hill slope for the reversibly bound agonist, trans-Bis-Q, remained near two. The kinetics of currents at hyperpolarized membrane potentials became complicated at higher agonist concentrations in a manner that was consistent with open-channel block by trans-Bis-Q; the currents showed a slow secondary increase in conductance. Averaged single-channel recordings at higher agonist concentrations resemble macroscopic relaxations under comparable conditions. Furthermore, those recordings also suggested that open channels are blocked by trans-Bis-Q at concentrations greater than 2 microM; the block depends strongly on membrane potential and increases with hyperpolarization. Currents at positive membrane potentials showed no evidence of open-channel block.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

通过乙酰胆碱(ACh)受体通道的全细胞电流或单通道电流,在电压钳制的大鼠肌球中或从肌球分离出的膜片中进行了研究。记录微电极中含有氯化铯以抑制外向电流,并使用河豚毒素来辅助抑制钠离子电流。为了尽量减少与浴加激动剂相关的问题,肌球浸泡在含有光异构化偶氮苯衍生物双Q的无活性(顺式)异构体的溶液中。施加不同强度的校准光脉冲以产生激动剂反式双Q的浓度跃变。通过ACh通道产生的全细胞电流弛豫沿指数时间进程趋近稳态,然后在接下来的几秒钟内随着新产生的激动剂扩散而下降。剂量反应关系是根据在三个膜电位下浸泡在500 nM顺式双Q中的肌球的希尔(双对数)图推断出来的。在低激动剂浓度(小于300 nM反式双Q)时,希尔图的斜率在-150 mV时平均为1.62,在-100 mV时为1.89,在+80 mV时为2.05。这些结果与表观激动剂亲和力常数一致,该常数随着膜去极化而降低,并使反应在剂量反应曲线上进一步下移。当肌球浸泡在更高浓度的顺式双Q(1.5 - 20 microM)中时,希尔图的斜率在所有膜电位下均降低,尽管在正电位时仍更接近2。这是从已知的剂量反应关系的S形预期得到的。希尔斜率对激动剂浓度的浅依赖性表明在激动剂分子的总体结合中存在负协同性。用二硫苏糖醇处理膜以减少二硫键后,可逆结合的激动剂反式双Q的希尔斜率仍接近2。在较高激动剂浓度下,超极化膜电位下电流的动力学变得复杂,其方式与反式双Q的开放通道阻断一致;电流显示出电导的缓慢二次增加。在较高激动剂浓度下的平均单通道记录类似于可比条件下的宏观弛豫。此外,这些记录还表明,在浓度大于2 microM时,开放通道被反式双Q阻断;阻断强烈依赖于膜电位,并随着超极化而增加。正膜电位下的电流没有显示出开放通道阻断的证据。(摘要截短于400字)

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