Kolb H A, Marten I, Hedrich R
Institut für Biophysik, Universität Hannover, Germany.
J Membr Biol. 1995 Aug;146(3):273-82. doi: 10.1007/BF00233947.
A quantitative analysis of the time- and voltage-dependent kinetics of the Guard Cell Anion Channel (GCAC1) current in guard cell protoplasts from Vicia faba was analyzed using the whole-cell patch clamp technique. The voltage-dependent steady-state activation of GCAC1 current followed a Boltzmann distribution. For the corresponding steady-state value of the activation variable a power of two was derived which yielded suitable fits of the time course of voltage-dependent current activation. The GCAC1 mediated chloride current could successfully be described in terms of the Hodgkin-Huxley equations commonly evoked for the Na channel in nerve. After step depolarizations from a potential in the range of the resting potential to potentials above the equilibrium potential for chloride an activation and also an inactivation could be described. The gating of both processes exhibited an inverse relationship on the polarity of the applied step potentials in the order of milliseconds. Deactivating tail currents decline exponentially. The presented analysis contributes to the understanding of the rising phase of the observed action potentials in guard cells of V. faba. Evidence is presented that the voltage-dependent kinetic properties of the GCAC1 current are different from those properties described for the excitable anion currents in the plasmalemma of Chara corallina (Beilby & Coster, 1979a).
利用全细胞膜片钳技术,对蚕豆保卫细胞原生质体中保卫细胞阴离子通道(GCAC1)电流的时间和电压依赖性动力学进行了定量分析。GCAC1电流的电压依赖性稳态激活遵循玻尔兹曼分布。对于激活变量的相应稳态值,导出了一个二次幂,它对电压依赖性电流激活的时间进程给出了合适的拟合。GCAC1介导的氯离子电流可以用通常用于描述神经中钠通道的霍奇金-赫胥黎方程成功地描述。从静息电位范围内的电位向高于氯离子平衡电位的电位进行阶跃去极化后,可以描述激活和失活过程。这两个过程的门控在毫秒级的外加阶跃电位极性上呈现反比关系。失活尾电流呈指数下降。本分析有助于理解蚕豆保卫细胞中观察到的动作电位的上升相。有证据表明,GCAC1电流的电压依赖性动力学特性与轮藻质膜中可兴奋阴离子电流所描述的特性不同(Beilby & Coster,1979a)。