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羰基氰化物间氯苯腙(CCCP)跨膜转运质子的动力学机制。

The kinetic mechanism by which CCCP (carbonyl cyanide m-chlorophenylhydrazone) transports protons across membranes.

作者信息

Kasianowicz J, Benz R, McLaughlin S

出版信息

J Membr Biol. 1984;82(2):179-90. doi: 10.1007/BF01868942.

Abstract

We demonstrate that a simple kinetic model describes the transport of protons across lipid bilayer membranes by the weak acid CCCP (carbonyl cyanide m-chlorophenylhydrazone). Four parameters characterize this model: the adsorption coefficients of the anionic and neutral forms of the weak acid onto the interface (beta A and beta HA) and the rate constants for the movement of A- and HA across the membrane (kappa A and kappa HA). These parameters were determined by equilibrium dialysis, electrophoretic mobility, membrane potential, membrane conductance, and spectrophotometric measurements. From these equilibrium and steady state measurements on diphytanoyl phosphatidylcholine/chlorodecane membranes we found that beta A = beta HA = 1.4 10(-3) cm, kappa A = 175 s-1 and kappa HA = 12,000 sec-1. These parameters and our model describe our kinetic experiments if we assume that the protonation reactions, which occur at the interfaces, remain at equilibrium. The model predicts a single exponential decay of the current in a voltage-clamp experiment. The model also predicts that the decay in the voltage across the membrane following an intense current pulse of short duration (approximately 50 nsec) can be described by the sum of two exponentials. The magnitudes and time constants of the relaxations that we observed in both voltage-clamp and charge-pulse experiments agree well with the predictions of the model for all values of pH, voltage and [CCCP].

摘要

我们证明了一个简单的动力学模型能够描述弱酸羰基氰化物间氯苯腙(CCCP)跨脂质双分子层膜转运质子的过程。该模型由四个参数表征:弱酸阴离子形式和中性形式在界面上的吸附系数(βA和βHA)以及A-和HA跨膜移动的速率常数(κA和κHA)。这些参数通过平衡透析、电泳迁移率、膜电位、膜电导和分光光度测量来确定。通过对二植烷酰磷脂酰胆碱/氯癸烷膜进行这些平衡和稳态测量,我们发现βA = βHA = 1.4×10⁻³ cm,κA = 175 s⁻¹ 且κHA = 12,000 s⁻¹ 。如果我们假设在界面发生的质子化反应保持平衡,这些参数和我们的模型就能描述我们的动力学实验。该模型预测在电压钳实验中电流呈单指数衰减。该模型还预测,在持续时间较短(约50纳秒)的强电流脉冲后,膜上电压的衰减可用两个指数之和来描述。我们在电压钳和电荷脉冲实验中观察到的弛豫的幅度和时间常数,对于所有pH、电压和[CCCP]值,都与模型的预测非常吻合。

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