Rich T C, Snyders D J
Department of Biomedical Engineering, School of Medicine, Vanderbilt University, Nashville, Tennessee 37232, USA.
Biophys J. 1998 Jul;75(1):183-95. doi: 10.1016/S0006-3495(98)77505-8.
The kinetic properties of hKv1.5, a Shaker-related cardiac delayed rectifier, expressed in Ltk- cells were studied. hKv1.5 currents elicited by membrane depolarizations exhibited a delay followed by biphasic activation. The biphasic activation remained after 5-s prepulses to membrane potentials between -80 and -30 mV; however, the relative amplitude of the slow component increased as the prepulse potential approached the threshold of channel activation, suggesting that the second component did not reflect activation from a hesitant state. The decay of tail currents at potentials between -80 and -30 mV was adequately described with a biexponential. The time course of deactivation slowed as the duration of the depolarizing pulse increased. This was due to a relative increase in the slowly decaying component, despite similar initial amplitudes reflecting a similar open probability after 50- and 500-ms prepulses. To further investigate transitions after the initial activated state, we examined the temperature dependence of inactivation. The time constants of slow inactivation displayed little temperature and voltage dependence, but the degree of the inactivation increased substantially with increased temperature. Recovery from inactivation proceeded with a biexponential time course, but long prepulses at depolarized potentials slowed the apparent rate of recovery from inactivation. These data strongly indicate that hKv1.5 has both multiple open states and multiple inactivated states.
对在Ltk-细胞中表达的与Shaker相关的心脏延迟整流器hKv1.5的动力学特性进行了研究。膜去极化引发的hKv1.5电流表现出延迟,随后是双相激活。在对-80至-30 mV之间的膜电位进行5秒预脉冲后,双相激活仍然存在;然而,随着预脉冲电位接近通道激活阈值,慢成分的相对幅度增加,这表明第二个成分并非反映来自犹豫状态的激活。在-80至-30 mV之间的电位下,尾电流的衰减可用双指数函数充分描述。随着去极化脉冲持续时间的增加,失活的时间进程变慢。这是由于缓慢衰减成分的相对增加,尽管在50毫秒和500毫秒预脉冲后初始幅度相似,反映出相似的开放概率。为了进一步研究初始激活状态后的转变,我们研究了失活的温度依赖性。慢失活的时间常数显示出很小的温度和电压依赖性,但失活程度随温度升高而显著增加。失活后的恢复过程呈现双指数时间进程,但在去极化电位下的长预脉冲减缓了失活后明显的恢复速率。这些数据有力地表明hKv1.5具有多个开放状态和多个失活状态。