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豚鼠心脏细胞中Cs⁺和Rb⁺阻断揭示内向整流钾通道的三桶结构

Triple-barrel structure of inwardly rectifying K+ channels revealed by Cs+ and Rb+ block in guinea-pig heart cells.

作者信息

Matsuda H, Matsuura H, Noma A

机构信息

Department of Physiology, Faculty of Medicine, Kyushu University, Fukuoka, Japan.

出版信息

J Physiol. 1989 Jun;413:139-57. doi: 10.1113/jphysiol.1989.sp017646.

Abstract
  1. The hypothesis that the inwardly rectifying K+ channel consists of a triple-barrel structure was investigated. Inward currents were recorded under the blocking effects of external Cs+ or Rb+ in the cell-attached configuration of the patch-clamp technique using single ventricular cells enzymatically isolated from guinea-pig hearts. 2. Cs+ (10-100 microM) or Rb+ (20-100 microM) added to the 150 mM-K+ pipette solution induced rapid open-blocked transitions in the inward open-channel currents. In about 20% of experiments the inward current showed two intermediate current levels equally spaced between the unit amplitude and the zero-conductance level. The current fluctuated between these four levels. In the remaining experiments no obvious sublevels were observed except spontaneous ones, whose amplitudes were not always equal to one-third or two-thirds of the unit amplitude. 3. In experiments showing sublevels, the probability that the open-channel current stayed at each level was measured at various concentrations of blockers and membrane potentials. In both Cs+ and Rb+ block, the distribution of the current levels showed reasonable agreement with the binomial theorem. This finding suggests that the inwardly rectifying K+ channel is composed of three equally conductive subunits and each subunit is independently blocked by Cs+ or Rb+. 4. The dwell-time histogram in each substate was well fitted with a single-exponential function. On the assumption of the binomial model, the blocking (mu) and unblocking (lambda) rate for Cs+ and Rb+ were calculated. The value of mu was linearly proportional to the concentration of the blocking ion at a given membrane potential and increased with hyperpolarization (e-fold increase with a change of -43.5 mV in the Cs+ block). lambda was almost independent of the concentration of the blocking ion and less dependent on the membrane potential than mu. 5. The open and blocked times were calculated in experiments showing no clear sublevels. The mean open time was almost equal to the mean dwell time at the full open level in experiments showing sublevels under the same conditions. On the other hand, the mean blocked time was about two or three times longer than the mean dwell time at the zero-conductance level measured in experiments with sublevels. These results may suggest that the instant one of the three subunits is plugged by blocking ions, the remaining two subunits are closed by unknown mechanisms. 6. Our results support the hypothesis that the cardiac inwardly rectifying K+ channel is composed of three equally conductive subunits.
摘要
  1. 对内向整流钾通道由三桶结构组成这一假说进行了研究。在膜片钳技术的细胞贴附模式下,使用从豚鼠心脏酶解分离的单个心室细胞,在外部铯离子(Cs +)或铷离子(Rb +)的阻断作用下记录内向电流。2. 添加到150 mM - K +移液管溶液中的Cs +(10 - 100 microM)或Rb +(20 - 100 microM)会使内向开放通道电流迅速发生开放 - 阻断转变。在约20%的实验中,内向电流在单位幅度和零电导水平之间显示出两个等间距的中间电流水平。电流在这四个水平之间波动。在其余实验中,除了自发的波动外未观察到明显的亚水平,其幅度并不总是等于单位幅度的三分之一或三分之二。3. 在显示亚水平的实验中,在不同浓度的阻断剂和膜电位下测量开放通道电流停留在每个水平的概率。在Cs +和Rb +阻断中,电流水平的分布与二项式定理显示出合理的一致性。这一发现表明内向整流钾通道由三个具有相同传导性的亚基组成,并且每个亚基被Cs +或Rb +独立阻断。4. 每个亚状态下的驻留时间直方图与单指数函数拟合良好。基于二项式模型的假设,计算了Cs +和Rb +的阻断(μ)和解阻断(λ)速率。在给定膜电位下,μ的值与阻断离子的浓度呈线性比例关系,并且随着超极化而增加(在Cs +阻断中,膜电位变化 - 43.5 mV时呈e倍增加)。λ几乎与阻断离子的浓度无关,并且比μ对膜电位的依赖性小。5. 在未显示明确亚水平的实验中计算开放和阻断时间。在相同条件下,显示亚水平的实验中平均开放时间几乎等于完全开放水平下的平均驻留时间。另一方面,平均阻断时间比显示亚水平的实验中在零电导水平下测量的平均驻留时间长约两到三倍。这些结果可能表明,当三个亚基中的一个瞬间被阻断离子堵塞时,其余两个亚基通过未知机制关闭。6. 我们的结果支持心脏内向整流钾通道由三个具有相同传导性的亚基组成这一假说。

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