首页> 美国卫生研究院文献>The Journal of Physiology >Voltage-dependent and calcium-dependent inactivation of calcium channel current in identified snail neurones.
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Voltage-dependent and calcium-dependent inactivation of calcium channel current in identified snail neurones.

机译:识别的蜗牛神经元中钙通道电流的电压依赖性和钙依赖性失活。

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摘要

1. The dependence of Ca2+ current inactivation on membrane potential and intracellular Ca2+ concentration ([Ca2+]i) was studied in TEA-loaded, identified Helix neurones which possess a single population of high-voltage-activated Ca2+ channels. During prolonged depolarization, the Ca2+ current declined from its peak with two clearly distinct phases. The time course of its decay was readily fitted by a double-exponential function. 2. In double-pulse experiments, the relationship between the magnitude of the Ca2+ current and the amount of Ca2+ inactivation was not linear, and considerable inactivation was present, even when conditioning pulses were to levels of depolarization so great that Ca2+ currents were near zero. Similar results were obtained when external Ca2+ was replaced by Ba2+. 3. In double-pulse experiments, hyperpolarization during the interpulse interval served to reprime a portion of the inactivated Ca2+ current for subsequent activation. The extent of repriming increased with hyperpolarization, reaching a maximum between -130 and -150 mV. The effectiveness of repriming hyperpolarizations was considerably increased when Ca2+ was replaced by Ba2+. 4. A significant fraction of inactivated Ca2+ channels can be recovered during hyperpolarizing pulses lasting only milliseconds. If hyperpolarizing pulses were applied before substantial inactivation of Ca2+ current, Ca2+ channels remained available for activation despite considerable Ca2+ entry. 5. The relationship between [Ca2+]i and inactivation was investigated by quantitatively injecting Ca2+-buffered solutions into the cells. The time course of Ca2+ current inactivation was unchanged at free [Ca2+] between 1 x 10(-7) and 1 x 10(-5) M. From 1 x 10(-7) to 1 x 10(-9) M, inactivation became progressively slower, mainly due to a decrease of the amplitude ratio (fast/slow) of the two components of inactivation, which fell from about unity to near zero at 1 x 10(-9) M. In double-pulse experiments, recovery from inactivation was enhanced in neurones that had been injected with Ca2+ chelator. 6. We conclude that inactivation of Ca2+ channels in these neurones depends on both [Ca2+]i and membrane potential. The voltage-dependent process may serve as a mechanism to quickly recover inactivated Ca2+ channels during repetitive firing despite considerable Ca2+ influx. 7. The results are discussed in the framework of a model which is based on two states of inactivation, INV and INCA, which represent different conformations of the inactivating substrate, and which are both reached from a lumped state of activation (A). Inactivation leads to high occupancy of INV during depolarization.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.在载有TEA的,已鉴定的螺旋神经元中,研究了Ca2 +电流失活对膜电位和细胞内Ca2 +浓度([Ca2 +] i)的依赖性,该螺旋神经元具有单个高压激活的Ca2 +通道。在长时间的去极化过程中,Ca2 +电流以两个明显不同的相从其峰值下降。它的衰减的时间过程很容易用双指数函数拟合。 2.在双脉冲实验中,即使当调节脉冲达到去极化水平以至于Ca2 +电流接近零时,Ca2 +电流的大小与Ca2 +失活量之间的关系不是线性的,并且存在相当大的失活。 。当外部Ca2 +被Ba2 +代替时,获得了相似的结果。 3.在双脉冲实验中,脉冲间隔期间的超极化作用是重新激活部分失活的Ca2 +电流,以进行后续激活。引发的程度随着超极化而增加,达到-130至-150 mV之间的最大值。用Ca2 +代替Ca2 +时,引发超极化的有效性大大提高。 4.在仅持续数毫秒的超极化脉冲期间,大部分失活的Ca2 +通道可以恢复。如果在Ca2 +电流基本失活之前施加超极化脉冲,尽管有大量的Ca2 +进入,但Ca2 +通道仍可用于激活。 5.通过将Ca 2+缓冲溶液定量注入细胞中,研究[Ca 2+] i与失活之间的关系。游离[Ca2 +]在1 x 10(-7)和1 x 10(-5)M之间时,Ca2 +电流失活的时间过程不变。从1 x 10(-7)到1 x 10(-9)M,失活逐渐变慢,主要是由于失活的两个分量的振幅比(快/慢)减小,在1 x 10(-9)M时,振幅比从大约1减小到接近零。在双脉冲实验中,注射了Ca2 +螯合剂的神经元增强了从失活中恢复的能力。 6.我们得出结论,这些神经元中Ca2 +通道的失活取决于[Ca2 +] i和膜电位。尽管有大量的Ca2 +涌入,但电压依赖性过程可作为一种机制,可在重复点火期间快速恢复失活的Ca2 +通道。 7.在模型的框架内讨论了结果,该模型基于两种灭活状态,即INV和INCA,它们代表了灭活底物的不同构象,并且都从集总的激活状态(A)达到。灭活会导致去极化过程中INV的大量占用(摘要以400字截断)

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