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在蜗牛神经元中同时记录到的膜片钳和全细胞钙电流。

Patch and whole cell calcium currents recorded simultaneously in snail neurons.

作者信息

Lux H D, Brown A M

出版信息

J Gen Physiol. 1984 May;83(5):727-50. doi: 10.1085/jgp.83.5.727.

Abstract

The flow of Ca ions through single Ca channels has been examined. The gigaseal method was used on identifiable snail neurons that were voltage clamped using a two-microelectrode voltage clamp method. Average Ca patch currents and whole cell currents have similar time courses. They are affected similarly by changes in temperature. The differences in amplitude and inactivation between Ba and Ca whole cell currents were present in the patch records. The stationary noise spectra recorded from ensembles of multichannel patches have two components with fast and slow time constants equivalent to two components in the whole cell tail current relaxations. Elementary current amplitudes measured from the variance-mean relationship and from noise spectra gave values comparable to measurements from single channels. The single channel I-V relationship was curvilinear and the maximum slope conductance in 40 mM Cao was 7 pS. The amplitude of unitary currents was unchanged at long times when inactivation had occurred; hence depletion is not involved in this process. Channel density was approximately 3 microns-2 and was the same for Ba and Ca currents. The whole cell asymmetry currents gave very large values for the gating charge per channel. Changes in temperature from 29 to 9 degrees C had only a slight effect on the two Ca tail current tau's at potentials where turn-on of patch and whole cell currents was markedly slowed and the peak amplitudes were reduced by one-third. Single channel recordings were obtained at these two temperatures, and the mean open time and the fast component of the closed times were scarcely affected. Unit amplitudes were reduced by 30% and the slow closed time component was doubled. Therefore, peak currents and the slow closed time component was doubled. Therefore, peak currents were reduced partly as a result of the reduction in unit amplitude, but mainly as a result of a reduction in opening probability, the latter arising from an increase of the long closed times. It is concluded that the behavior of single Ca channels in membrane patches is the same as it is in whole cells. Cooling from 29 to 9 degrees C acts primarily on transitions among closed states and has little effect on the open to closed transition.

摘要

已对钙离子通过单个钙通道的流动进行了研究。采用千兆封接方法,对使用双微电极电压钳制方法进行电压钳制的可识别蜗牛神经元进行研究。平均钙斑片电流和全细胞电流具有相似的时间进程。它们受温度变化的影响相似。钡和钙全细胞电流在幅度和失活方面的差异在斑片记录中也存在。从多通道斑片集合记录的稳态噪声谱有两个成分,其快速和慢速时间常数相当于全细胞尾电流弛豫中的两个成分。从方差 - 均值关系和噪声谱测量的基本电流幅度给出的值与单通道测量值相当。单通道电流 - 电压关系呈曲线形,在40 mM钙离子浓度下的最大斜率电导为7 pS。当发生失活时,单位电流幅度在长时间内保持不变;因此,耗尽不参与此过程。通道密度约为3微米-2,钡和钙电流的通道密度相同。全细胞不对称电流给出了每个通道门控电荷的非常大的值。温度从29℃降至9℃时,在斑片电流和全细胞电流开启明显减慢且峰值幅度降低三分之一的电位下,对两个钙尾电流时间常数只有轻微影响。在这两个温度下获得了单通道记录,平均开放时间和关闭时间的快速成分几乎不受影响。单位幅度降低了30%,关闭时间的慢速成分增加了一倍。因此,峰值电流部分是由于单位幅度的降低,但主要是由于开放概率的降低,后者是由于长关闭时间的增加所致。结论是,膜斑片中单个钙通道的行为与全细胞中的行为相同。从29℃冷却至9℃主要作用于关闭状态之间的转换,对开放到关闭的转换影响很小。

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