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二价阳离子对蛙神经肌肉接头处乙酰胆碱激活通道的影响。

Divalent cation effects on acetylcholine-activated channels at the frog neuromuscular junction.

作者信息

Lewis C A

出版信息

Cell Mol Neurobiol. 1984 Sep;4(3):273-84. doi: 10.1007/BF00733590.

Abstract

The effects of the divalent cations Ca and Mg on the properties of ACh-activated channels at the frog neuromuscular junction were studied using a two-microelectrode voltage clamp. The divalent cation concentration was varied from 2 to 40 mM in solutions containing 50% normal Na. The reversal potential was determined by interpolation of the acetylcholine (ACh)-induced current versus voltage relationship. The single-channel conductance and the mean channel lifetime were calculated from fluctuation analysis of the ACh-induced end-plate current. Extracellular Na and/or divalent cations affected the reversal potential of endplate channels in a way that cannot be described by the Goldman-Hodgkin-Katz equation or by a simple two-barrier, one-binding site model of the channel if the assumption was made that permeability ratios were constant and not a function of ion concentrations. Increasing the divalent cation concentration decreased the single-channel conductance to approximately 10 pS in solutions with 50% Na and 40 mM divalent cation concentrations. The effect of the divalent cations Ca and Mg on the mean channel lifetime was complex and dependent on whether the divalent cation was Ca or Mg. The mean channel lifetime was not significantly changed in most solutions with increased Ca concentration, while it was slightly prolonged by increased Mg concentration.

摘要

采用双微电极电压钳技术研究了二价阳离子钙(Ca)和镁(Mg)对蛙神经肌肉接头处乙酰胆碱(ACh)激活通道特性的影响。在含有50%正常钠离子浓度的溶液中,二价阳离子浓度在2至40 mM之间变化。通过对乙酰胆碱(ACh)诱导电流与电压关系进行内插来确定反转电位。根据ACh诱导的终板电流的波动分析计算单通道电导和平均通道寿命。如果假设渗透率比值恒定且不是离子浓度的函数,细胞外钠离子和/或二价阳离子对终板通道反转电位的影响无法用戈德曼-霍奇金- Katz方程或通道的简单双屏障、单结合位点模型来描述。在含有50%钠离子和40 mM二价阳离子浓度的溶液中,增加二价阳离子浓度会使单通道电导降低至约10 pS。二价阳离子钙(Ca)和镁(Mg)对平均通道寿命的影响较为复杂,且取决于二价阳离子是Ca还是Mg。在大多数溶液中,随着Ca浓度增加,平均通道寿命没有显著变化,而随着Mg浓度增加,平均通道寿命略有延长。

相似文献

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Effects of [Ca2+] and [Mg2+] on the decay of miniature endplate currents.
Nature. 1978 Jan 5;271(5640):77-9. doi: 10.1038/271077a0.

本文引用的文献

1
POTENTIAL, IMPEDANCE, AND RECTIFICATION IN MEMBRANES.膜的电位、阻抗和整流。
J Gen Physiol. 1943 Sep 20;27(1):37-60. doi: 10.1085/jgp.27.1.37.
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The interaction of extracellular H+, Na+, Ca2+ and Sr2+ on the decay of miniature end-plate currents.
Brain Res. 1982 Jun 10;241(2):285-90. doi: 10.1016/0006-8993(82)91065-4.
7
Patch clamp studies of single ionic channels.单离子通道的膜片钳研究。
Annu Rev Biophys Bioeng. 1984;13:269-302. doi: 10.1146/annurev.bb.13.060184.001413.

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