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豚鼠心肌细胞中与钙通道相关的一种内在电位依赖性失活机制。

An intrinsic potential-dependent inactivation mechanism associated with calcium channels in guinea-pig myocytes.

作者信息

Hadley R W, Hume J R

机构信息

Department of Pharmacology and Toxicology, Michigan State University, East Lansing 48824.

出版信息

J Physiol. 1987 Aug;389:205-22. doi: 10.1113/jphysiol.1987.sp016654.

Abstract
  1. Currents through Ca2+ channels of single guinea-pig ventricular myocytes were studied using patch electrodes for whole-cell recording. Currents through Na+ and K+ channels were suppressed by the application of drugs or the substitution of impermeant ions. 2. Inactivation of the Ca2+ current (ICa) was investigated using a two-pulse protocol. The amount of inactivation left behind by a pre-pulse appeared to be related to current magnitude, as others have reported. The dependence of inactivation on the pre-pulse potential was partially U-shaped, as the amount of inactivation peaked at 0 mV and then declined with more positive pre-pulses. 3. Non-specific current carried by monovalent ions through Ca2+ channels (Ins) was induced by lowering the extracellular Ca2+ concentration with EGTA. Ins peaked in an inward direction at -20 mV, reversed direction at +22 mV, and became a large outward current at more positive potentials. 4. Ins inactivated with a slow time course. The inactivation was not due to accumulation or depletion phenomena. Studies using two-pulse protocols showed that the amount of inactivation left by a pre-pulse was directly related to the pre-pulse potential. 5. The addition of micromolar amounts of free Ca2+ to the external solution induced outward rectification of Ins. Inward currents were small or absent, while larger outward currents could still be seen at very positive potentials. Ca2+-channel inactivation still occurred under these conditions, even in the absence of any significant ionic movement. 6. The time courses of Ins inactivation and recovery were studied. The half-time of Ins inactivation decreased with larger depolarizations. Recovery of Ins was very slow, but could be accounted for by changes in the surface charge of the membrane. 7. It is concluded that Ins inactivation is due solely to a voltage-dependent inactivation process which is intrinsic to myocardial Ca2+ channels. Voltage-dependent inactivation appears to account for a significant proportion of total Ca2+-channel inactivation at negative potentials, and appears to account for almost all of the inactivation at very positive potentials, even in the presence of millimolar concentration of external Ca2+.
摘要
  1. 使用膜片电极进行全细胞记录,研究了单个豚鼠心室肌细胞Ca2+通道中的电流。通过施加药物或替换非渗透性离子来抑制通过Na+和K+通道的电流。2. 使用双脉冲方案研究了Ca2+电流(ICa)的失活。如其他研究报道,预脉冲后留下的失活量似乎与电流大小有关。失活对预脉冲电位的依赖性呈部分U形,因为失活量在0 mV时达到峰值,然后随着预脉冲电位更正而下降。3. 通过用EGTA降低细胞外Ca2+浓度,诱导单价离子通过Ca2+通道携带的非特异性电流(Ins)。Ins在-20 mV时向内达到峰值,在+22 mV时反转方向,并在更正电位时成为大的外向电流。4. Ins以缓慢的时间进程失活。这种失活不是由于积累或耗尽现象。使用双脉冲方案的研究表明,预脉冲留下的失活量与预脉冲电位直接相关。5. 向外部溶液中添加微摩尔量的游离Ca2+会诱导Ins的外向整流。内向电流很小或不存在,但在非常正的电位下仍可看到较大的外向电流。即使在没有任何明显离子移动的情况下,在这些条件下Ca2+通道仍会发生失活。6. 研究了Ins失活和恢复的时间进程。Ins失活的半衰期随着更大的去极化而缩短。Ins的恢复非常缓慢,但可以用膜表面电荷的变化来解释。7. 得出的结论是,Ins失活仅归因于心肌Ca2+通道固有的电压依赖性失活过程。电压依赖性失活似乎在负电位下占总Ca2+通道失活的很大比例,并且在非常正的电位下似乎几乎占所有失活,即使存在毫摩尔浓度的外部Ca2+。

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