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用油门浓度跃变法揭示ATP敏感性钾通道的动力学

Kinetics of ATP-sensitive K+ channel revealed with oil-gate concentration jump method.

作者信息

Qin D Y, Takano M, Noma A

机构信息

Department of Physiology, Jiangxi Medical College, China.

出版信息

Am J Physiol. 1989 Nov;257(5 Pt 2):H1624-33. doi: 10.1152/ajpheart.1989.257.5.H1624.

DOI:10.1152/ajpheart.1989.257.5.H1624
PMID:2589516
Abstract

Kinetics for gating the ATP-sensitive K+ channel was studied by exposing the inside-out patch to instantaneous changes in the intracellular concentration of ATP ( [ATP]i) using the oil-gate concentration jump technique in guinea pig ventricular cells. The closing time course of the channel after increasing [ATP]i was exponential with a time constant (tau), which decreased with increasing [ATP]i. The linear 1/tau - [ATP]i relation revealed two different binding (closing) rate constants (mu) of 51.7 and 5.6 mM-1.s-1 and predicted a common unbinding (opening) rate constant (lambda) of 3.2 s-1. A variable latent period was observed before channel opening when [ATP]i was decreased. The mechanism of latency is not clear. Once the channel started to open at the change lowering [ATP]i, the opening time course was exponential. Measurements of the exponential tau obtained at 0 mM [ATP]i were divided into two groups with corresponding lambda of 2.8 and 20.1 s-1, respectively. The former agrees with the predicted value of 3.2 s-1, but in the latter case, tau for opening increased as [ATP]i was increased. This increase in tau was attributed to a decrease of lambda, which approached an asymptotic value of 3.2 s-1. We conclude that binding and unbinding of one molecule of ATP determine the gating of ATP-sensitive K+ channel. Different pairs of mu and lambda result in four types of gating patterns and practically two states of sensitivities to ATP.

摘要

运用油闸浓度阶跃技术,在豚鼠心室细胞中通过将内向外膜片暴露于细胞内ATP浓度([ATP]i)的瞬时变化来研究ATP敏感性钾通道的门控动力学。增加[ATP]i后通道的关闭时间进程呈指数形式,其时间常数(tau)随[ATP]i增加而减小。线性的1/tau - [ATP]i关系揭示了两个不同的结合(关闭)速率常数(mu),分别为51.7和5.6 mM-1·s-1,并预测了一个共同的解离(开放)速率常数(lambda)为3.2 s-1。当降低[ATP]i时,在通道开放前观察到可变的潜伏期。潜伏期的机制尚不清楚。一旦通道在降低[ATP]i的变化时开始开放,开放时间进程呈指数形式。在0 mM [ATP]i时获得的指数tau测量值分为两组,相应的lambda分别为2.8和20.1 s-1。前者与预测值3.2 s-1一致,但在后一种情况下,开放的tau随[ATP]i增加而增加。tau的这种增加归因于lambda的降低,lambda接近渐近值3.2 s-1。我们得出结论,一分子ATP的结合和解离决定了ATP敏感性钾通道的门控。不同的mu和lambda对导致四种门控模式以及实际上对ATP的两种敏感性状态。

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