Simmons M A, Creazzo T, Hartzell H C
J Gen Physiol. 1986 Dec;88(6):739-55. doi: 10.1085/jgp.88.6.739.
A quantitative description of the time-dependent and voltage-sensitive outward currents in heart has been hampered by the complications inherent to the multicellular preparations previously used. We have used the whole-cell patch-clamp technique to record the delayed outward K+ current, IK, in single cells dissociated from frog atrium. Na+ currents were blocked with tetrodotoxin and Ca2+ currents with Mn2+ or Cd2+. After depolarizations from -50 mV to potentials positive to -30 mV, a time-dependent outward current was observed. This current has been characterized according to its steady state activation, kinetics, and ion transfer function. The current is well described as a single Hodgkin-Huxley conductance. The deactivation of the current is a single exponential. Activation of the current is sigmoid and is fitted well by raising the activation variable to the second power. The reversal potential of IK is near EK and shifts by 57 mV/10-fold change in [K+]o. This suggests that the current is carried selectively by K ions. The threshold for activation is near -30 mV. IK is maximally activated positive to +20 mV and shows no inactivation. The fully activated current-voltage relationship is linear between -110 and +50 mV. Neither Ba2+ (250 microM) nor Cd2+ (100 microM) affects IK.
以往使用的多细胞标本所固有的复杂性,阻碍了对心脏中随时间变化且对电压敏感的外向电流进行定量描述。我们采用全细胞膜片钳技术,记录从蛙心房分离出的单个细胞中的延迟外向钾电流(IK)。用河豚毒素阻断钠电流,用锰离子或镉离子阻断钙电流。从-50mV去极化到-30mV以上的电位后,观察到一个随时间变化的外向电流。该电流已根据其稳态激活、动力学和离子转移功能进行了表征。该电流可以很好地描述为单一的霍奇金-赫胥黎电导。电流的失活是单指数形式。电流的激活呈S形,通过将激活变量提高到二次幂能很好地拟合。IK的反转电位接近EK,且在[K+]o每变化10倍时会偏移57mV。这表明该电流是由钾离子选择性携带的。激活阈值接近-30mV。IK在+20mV以上被最大程度激活,且不表现出失活。在-110mV至+50mV之间,完全激活的电流-电压关系呈线性。250微摩尔的钡离子和100微摩尔的镉离子均不影响IK。