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豚鼠心室肌细胞内向整流钾通道的内向钙离子电压依赖性阻滞作用

Voltage-dependent block by internal Ca2+ ions of inwardly rectifying K+ channels in guinea-pig ventricular cells.

作者信息

Matsuda H, Cruz J dos S

机构信息

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

出版信息

J Physiol. 1993 Oct;470:295-311. doi: 10.1113/jphysiol.1993.sp019859.

Abstract
  1. The block of the inwardly rectifying K+ channel by intracellular Ca2+ was studied in guinea-pig ventricular cells. 2. Single-channel currents through the inwardly rectifying K+ channel were recorded in the inside-out configuration at 150 mM external and internal K+. Internal Ca2+, at a concentration of 0.4-10 microM, induced subconductance levels with one-third and two-thirds of the unitary amplitude in the outward currents without affecting the inward currents. 3. Occupancy at each sublevel was estimated from the amplitude histogram which showed four equally spaced peaks in the presence of internal Ca2+. At different degrees of blockade, the distribution of the current levels showed a reasonable agreement with the binomial theorem. 4. The outward mean open-channel currents were measured at different Ca2+ concentrations and voltages. The current-voltage relation rectified inwardly in the presence of internal Ca2+ in a concentration-dependent manner. 5. The outward mean open-channel currents were normalized to unitary amplitudes in the absence of Ca2+. The normalized current-Ca2+ concentration curve was fitted by saturation kinetics with a Hill coefficient of 1 at each voltage. The voltage dependence of the dissociation constants gives the value for the fractional electrical distance of the Ca2+ binding site of 0.7. 6. The dwell times in each substrate were distributed exponentially. On the assumption that the inwardly rectifying K+ channel of cardiac cells is composed of three identical conducting subunits and each subunit is blocked by Ca2+ independently, the blocking (mu) and unblocking (lambda) rates were calculated. The value of mu increased with higher Ca2+ concentrations or larger depolarizations, while lambda was independent of Ca2+ and decreased with larger depolarization. 7. It is thus concluded that internal Ca2+ produces a voltage-dependent block of the channel to cause inward rectification although the blocking effect is less potent than that of Mg2+. The substate behaviour seen with internal Ca2+ supports the triple-barrelled structure of the cardiac inwardly rectifying K+ channel.
摘要
  1. 在豚鼠心室细胞中研究了细胞内Ca2+对内向整流钾通道的阻断作用。2. 在150 mM的细胞外和细胞内钾浓度下,采用内面向外模式记录通过内向整流钾通道的单通道电流。浓度为0.4 - 10 microM的细胞内Ca2+在不影响内向电流的情况下,使外向电流产生了单位幅度三分之一和三分之二的亚电导水平。3. 根据幅度直方图估计每个亚水平的占有率,该直方图在存在细胞内Ca2+时显示出四个等间距的峰。在不同程度的阻断下,电流水平的分布与二项式定理表现出合理的一致性。4. 在不同的Ca2+浓度和电压下测量外向平均开放通道电流。在存在细胞内Ca2+的情况下,电流 - 电压关系以浓度依赖的方式向内整流。5. 将外向平均开放通道电流归一化为无Ca2+时的单位幅度。在每个电压下,归一化的电流 - Ca2+浓度曲线通过饱和动力学拟合,希尔系数为1。解离常数的电压依赖性给出了Ca2+结合位点的分数电距离值为0.7。6. 每个亚状态下的驻留时间呈指数分布。假设心肌细胞的内向整流钾通道由三个相同的传导亚基组成,且每个亚基被Ca2+独立阻断,计算了阻断(μ)和解阻断(λ)速率。μ值随Ca2+浓度升高或更大的去极化而增加,而λ与Ca2+无关,并随更大的去极化而降低。7. 因此得出结论,尽管细胞内Ca2+的阻断作用比Mg2+弱,但它会对通道产生电压依赖性阻断,从而导致内向整流。细胞内Ca2+所见的亚状态行为支持心肌内向整流钾通道的三桶结构。

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