Sheridan R E, Lester H A
J Gen Physiol. 1977 Aug;70(2):187-219.
Kinetic measurements are employed to reconstruct the steady-state activation of acetylcholine [Ach] receptor channels in electrophorus electroplaques. Neurally evoked postsynaptic currents (PSCs) decay exponentially; at 15 degrees C the rate constant, alpha, equals 1.2 ms(-1) at 0 mV and decreases e-fold for every 86 mV as the membrane voltage is made more negative. Voltage-jump relaxations have been measured with bath-applied ACh, decamethonium, carbachol, or suberylcholine. We interpret the reciprocal relaxation time 1/tau as the sum of the rate constant alpha for channel closing and a first-order rate constant for channel opening. Where measureable, the opening rate increases linearly with [agonist] and does not vary with voltage. The voltage sensitivity of small steady-state conductances (e- fold for 86 mV) equals that of the closing rate alpha, confirming that the opening rate has little or no additional voltage sensitivity. Exposure to alpha-bungarotoxin irreversibly decreases the agonist-induced conductance but does not affect the relaxation kinetics. Tubocurarine reversibly reduces both the conductance and the opening rate. In the simultaneous presence of two agonist species, voltage-jump relaxations have at least two exponential components. The data are fit by a model in which (a) the channel opens as the receptor binds the second in a sequence of two agonist molecules, with a forward rate constant to 10(7) to 2x10(8) M(-1)s(-1); and (b) the channel then closes as either agonist molecule dissociates, with a voltage-dependent rate constant of 10(2) to 3x10(3)s(-1).
动力学测量被用于重建电鳗电板中乙酰胆碱[Ach]受体通道的稳态激活。神经诱发的突触后电流(PSC)呈指数衰减;在15℃时,速率常数α在0 mV时等于1.2 ms⁻¹,并且随着膜电压变得更负,每86 mV下降一个e倍。已经用浴槽施加的乙酰胆碱、十烃季铵、卡巴胆碱或辛二酰胆碱测量了电压阶跃弛豫。我们将倒数弛豫时间1/τ解释为通道关闭的速率常数α与通道开放的一级速率常数之和。在可测量的情况下,开放速率随[激动剂]线性增加且不随电压变化。小稳态电导的电压敏感性(每86 mV一个e倍)等于关闭速率α的电压敏感性,证实开放速率几乎没有或没有额外的电压敏感性。暴露于α-银环蛇毒素会不可逆地降低激动剂诱导的电导,但不影响弛豫动力学。筒箭毒碱可逆地降低电导和开放速率。在同时存在两种激动剂的情况下,电压阶跃弛豫至少有两个指数成分。数据由一个模型拟合,其中(a)通道在受体结合两个激动剂分子序列中的第二个时开放,正向速率常数为10⁷至2×10⁸ M⁻¹s⁻¹;(b)然后通道在任一激动剂分子解离时关闭,电压依赖性速率常数为10²至3×10³ s⁻¹。