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首页> 外文期刊>The Journal of general physiology >Cardiac calcium channels in planar lipid bilayers. L-type channels and calcium-permeable channels open at negative membrane potentials.
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Cardiac calcium channels in planar lipid bilayers. L-type channels and calcium-permeable channels open at negative membrane potentials.

机译:平面脂质双层中的心脏钙通道。 L型通道和钙可渗透通道在负膜电位下打开。

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Planar lipid bilayer recordings were used to study Ca channels from bovine cardiac sarcolemmal membranes. Ca channel activity was recorded in the absence of nucleotides or soluble enzymes, over a range of membrane potentials and ionic conditions that cannot be achieved in intact cells. The dihydropyridine-sensitive L-type Ca channel, studied in the presence of Bay K 8644, was identified by a detailed comparison of its properties in artificial membranes and in intact cells. L-type Ca channels in bilayers showed voltage dependence of channel activation and inactivation, open and closed times, and single-channel conductances in Ba2+ and Ca2+ very similar to those found in cell-attached patch recordings. Open channels were blocked by micromolar concentrations of external Cd2+. In this cell-free system, channel activity tended to decrease during the course of an experiment, reminiscent of Ca2+ channel "rundown" in whole-cell and excised-patch recordings. A purely voltage-dependent component of inactivation was observed in the absence of Ca2+ stores or changes in intracellular Ca2+. Millimolar internal Ca2+ reduced unitary Ba2+ influx but did not greatly increase the rate or extent of inactivation or the rate of channel rundown. In symmetrical Ba2+ solutions, unitary conductance saturated as the Ba2+ concentration was increased up to 500 mM. The bilayer recordings also revealed activity of a novel Ca2+-permeable channel, termed "B-type" because it may contribute a steady background current at negative membrane potentials, which is distinct from L-type or T-type Ca channels previously reported. Unlike L-type channels, B-type channels have a small unitary Ba2+ conductance (7 pS), but do not discriminate between Ba2+ and Ca2+, show no obvious sensitivity to Bay K 8644, and do not run down. Unlike either L- or T-type channels, B-type channels did not require a depolarization for activation and displayed mean open times of greater than 100 ms.
机译:平面脂质双层记录用于研究牛心肌肌膜的钙通道。在缺乏核苷酸或可溶性酶的情况下,在完整细胞无法实现的一系列膜电位和离子条件下记录了Ca通道的活性。通过在Bay K 8644存在下研究的对二氢吡啶敏感的L型Ca通道,可以通过在人造膜和完整细胞中对其性能进行详细比较来确定。双层中的L型Ca通道显示出通道激活和失活,打开和关闭时间以及Ba2 +和Ca2 +中的单通道电导的电压依赖性,这与在细胞贴片记录中发现的非常相似。明渠的外部摩尔Cd2 +浓度微摩尔阻塞。在这种无细胞的系统中,通道活性在实验过程中趋于降低,让人想起了全细胞和切除补丁记录中的Ca2 +通道“减少”现象。在不存在Ca2 +存储或细胞内Ca2 +变化的情况下,观察到了纯粹的电压依赖性失活成分。毫摩尔的内部Ca2 +减少了单一的Ba2 +流入,但并未大大增加失活的速率或程度或通道流失的速率。在对称的Ba2 +溶液中,单位电导随着Ba2 +浓度增加到500 mM而饱和。双层记录还揭示了称为“ B型”的新型Ca2 +渗透通道的活性,因为它可能在负膜电位下产生稳定的背景电流,这与之前报道的L型或T型Ca通道不同。与L型通道不同,B型通道具有较小的单位Ba2 +电导(7 pS),但不能区分Ba2 +和Ca2 +,对Bay K 8644没有明显的敏感性,也不会耗尽。与L型或T型通道不同,B型通道不需要去极化即可激活,并且显示的平均打开时间大于100毫秒。

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