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首页> 外文期刊>The Journal of general physiology >Gating kinetics of Ca2+-activated K+ channels from rat muscle incorporated into planar lipid bilayers. Evidence for two voltage-dependent Ca2+ binding reactions.
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Gating kinetics of Ca2+-activated K+ channels from rat muscle incorporated into planar lipid bilayers. Evidence for two voltage-dependent Ca2+ binding reactions.

机译:来自大鼠肌肉的Ca2 +激活的K +通道的门控动力学纳入平面脂质双层。两个电压依赖性Ca 2+结合反应的证据。

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The gating kinetics of a Ca2+-activated K+ channel from adult rat muscle plasma membrane are studied in artificial planar bilayers. Analysis of single-channel fluctuations distinguishes two Ca2+- and voltage-dependent processes: (a) short-lived channel closure (less than 1 ms) events appearing in a bursting pattern; (b) opening and closing events ranging from one to several hundred milliseconds in duration. The latter process is studied independently of the first and is denoted as the primary gating mode. At constant voltage, the mean open time of the primary gating mode is a linear function of the [Ca2+], whereas the mean closed time is a linear function of the reciprocal [Ca2+]. In the limits of zero and infinite [Ca2+], the mean open and the mean closed times are, respectively, independent of voltage. These results are predicted by a kinetic scheme consisting of the following reaction steps: (a) binding of Ca2+ to a closed state; (b) channel opening; (c) binding of a second Ca2+ ion. In this scheme, the two Ca2+ binding reactions are voltage dependent, whereas the open-closed transition is voltage independent. The kinetic constant derived for this scheme gives an accurate theoretical fit to the observed equilibrium open-state probability. The results provide evidence for a novel regulatory mechanism for the activity of an ion channel: modulation by voltage of the binding of an agonist molecule, in this case, Ca2+ ion.
机译:在人造平面双层膜中研究了成年大鼠肌肉质膜的Ca2 +激活的K +通道的门控动力学。单通道波动的分析可区分两个依赖于Ca2 +和电压的过程:(a)短时通道关闭(小于1 ms)事件以突发模式出现; (b)开启和关闭事件的持续时间从一毫秒到几百毫秒不等。后一个过程的研究与第一个过程无关,被称为主要选通模式。在恒定电压下,主选通模式的平均打开时间是[Ca2 +]的线性函数,而平均关闭时间是倒数[Ca2 +]的线性函数。在零和无限[Ca2 +]的范围内,平均打开时间和平均关闭时间分别与电压无关。通过动力学方案预测这些结果,该动力学方案包括以下反应步骤:(a)Ca 2+与封闭状态的结合; (b)渠道开放; (c)第二Ca 2+离子的结合。在该方案中,两个Ca 2+结合反应是电压依赖性的,而开闭过渡是电压依赖性的。为此方案得出的动力学常数为观察到的平衡开态概率提供了精确的理论拟合。结果为离子通道活性的新型调节机制提供了证据:通过电压调节激动剂分子(在这种情况下为Ca2 +离子)的结合。

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