首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >Characteristics of current fluctuations originating from activities of inward-rectifier K+ channels in guinea-pig heart cells.
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Characteristics of current fluctuations originating from activities of inward-rectifier K+ channels in guinea-pig heart cells.

机译:来自豚鼠心脏细胞内向整流器K +通道活动的电流波动特征。

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Although outward current through inward-rectifier K+ channels has been observed in the whole-cell mode of the patch-clamp technique, no outward unitary current in single-channel studies has been recorded with the physiological ionic conditions. Hence, the relationship between single-channel activities and the inward rectification of the whole-cell current has been poorly understood. Therefore, characteristics of inward-rectifier K+ channels in guinea-pig ventricular myocytes were assessed by the noise analysis of the K+ current using the whole-cell patch clamp method. Partial blockade of the inward-rectifier K+ current by Ba2+ was used to obtain different levels of mean current and current fluctuation as needed for variance-to-mean analysis. The plot of variance of current fluctuation against mean currents was well fitted by theoretical parabolic curves, and the unitary conductance, the open probability, and the density of functional channels were deduced. The unitary conductance of the inward-rectifier K+ channel exhibited an inward-rectification, although the channel open probability and the density of functional channels were not much different at various holding potentials used. The unitary conductance was not changed when the intrapipette concentration of Mg2+ was reduced, but tended to be smaller when the pipette contained high Mg2+ concentration. Spermine also tended to reduce the outward unitary conductances, although the reduction was not statistically significant. These results suggest that the inward rectification in the whole-cell current was due to the inward-rectifying property of the unitary conductance of the K+ channels. Inward rectification of the unitary conductance may be caused by blocking of the channels by both Mg2+ and polyamines.
机译:尽管已经在膜片钳技术的全细胞模式中观察到通过内向整流器K +通道的外向电流,但是在单通道研究中,没有记录到具有生理离子条件的外向单一电流。因此,人们对单通道活动与全细胞电流向内整流之间的关系了解甚少。因此,通过使用全细胞膜片钳方法对K +电流进行噪声分析,评估了豚鼠心室肌​​细胞内向整流器K +通道的特征。 Ba2 +对内部整流器K +电流的部分阻塞用于获得方差均值分析所需的不同水平的平均电流和电流波动。理论上的抛物线曲线很好地拟合了电流波动相对于平均电流的方差图,并推导了单位电导,开放概率和功能通道的密度。内向整流器K +通道的单位电导表现出内向整流,尽管在各种保持电势下,通道打开概率和功能通道的密度差异不大。当降低移液器中的Mg2 +浓度时,单位电导不变,而当移液器中的Mg2 +浓度高时,单位电导率趋于减小。精胺也倾向于减少向外的单位电导,尽管这种减少在统计上并不显着。这些结果表明,全电池电流中的向内整流是由于K +通道的单位电导的向内整流特性。 Mg2 +和多胺均会阻塞通道,从而导致单位电导的向内整流。

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