Smith P A, Bokvist K, Arkhammar P, Berggren P O, Rorsman P
Department of Medical Physics, Gothenburg University, Sweden.
J Gen Physiol. 1990 Jun;95(6):1041-59. doi: 10.1085/jgp.95.6.1041.
The contribution of Ca2(+)-activated and delayed rectifying K+ channels to the voltage-dependent outward current involved in spike repolarization in mouse pancreatic beta-cells (Rorsman, P., and G. Trube. 1986. J. Physiol. 374:531-550) was assessed using patch-clamp techniques. A Ca2(+)-dependent component could be identified by its rapid inactivation and sensitivity to the Ca2+ channel blocker Cd2+. This current showed the same voltage dependence as the voltage-activated (Cd2(+)-sensitive) Ca2+ current and contributed 10-20% to the total beta-cell delayed outward current. The single-channel events underlying the Ca2(+)-activated component were investigated in cell-attached patches. Increase of [Ca2+]i invariably induced a dramatic increase in the open state probability of a Ca2(+)-activated K+ channel. This channel had a single-channel conductance of 70 pS [( K+]o = 5.6 mM). The Ca2(+)-independent outward current (constituting greater than 80% of the total) reflected the activation of an 8 pS [( K+]o = 5.6 mM; [K+]i = 155 mM) K+ channel. This channel was the only type observed to be associated with action potentials in cell-attached patches. It is suggested that in mouse beta-cells spike repolarization results mainly from the opening of the 8-pS delayed rectifying K+ channel.
利用膜片钳技术评估了Ca2(+)-激活的和延迟整流的K+通道对小鼠胰腺β细胞动作电位复极化过程中电压依赖性外向电流的贡献(Rorsman, P., and G. Trube. 1986. J. Physiol. 374:531 - 550)。一个Ca2(+)-依赖成分可通过其快速失活以及对Ca2+通道阻滞剂Cd2+的敏感性来识别。该电流与电压激活的(Cd2(+)-敏感的)Ca2+电流表现出相同的电压依赖性,并且对β细胞总的延迟外向电流贡献了10 - 20%。在细胞贴附式膜片中研究了Ca2(+)-激活成分背后的单通道事件。[Ca2+]i的增加总是会引起Ca2(+)-激活的K+通道开放概率的显著增加。该通道的单通道电导为70 pS([K+]o = 5.6 mM)。Ca2(+)-非依赖的外向电流(占总量的80%以上)反映了一个8 pS([K+]o = 5.6 mM;[K+]i = 155 mM)K+通道的激活。在细胞贴附式膜片中,该通道是唯一观察到与动作电位相关的类型。有人提出,在小鼠β细胞中,动作电位复极化主要源于8 - pS延迟整流K+通道的开放。