Ram J L, Dagan D
Brain Res. 1987 Mar 3;405(1):16-25. doi: 10.1016/0006-8993(87)90985-1.
Two species of inactivating outward current channels and a non-inactivating voltage-dependent current were seen in cell-attached patches of Helix neurons. Large, slowly inactivating channels had a slope conductance of 44 pS as measured with patch pipets containing the normal extracellular ion concentrations, including 4 mM potassium. Latency to maximal opening was 50-220 ms, and the inactivation time constant averaged 350 ms. Channel opening was decreased by preceding depolarization. The channels were selective for potassium and inhibited by 50 mM TEA. Small, quickly inactivating channels were 14 pS and had kinetics and voltage dependence similar to IA. Patch depolarization also activated a non-inactivating voltage-dependent outward current having channel conductance and/or kinetics such that individual channel openings and closings could not be distinguished. Such current was also seen in the presence of 50 mM TEA, but not in the presence of Co2+, characteristics which are similar to outward hydrogen ion currents, described by others in Helix neurons.
在海兔神经元的细胞贴附式膜片中观察到两种失活外向电流通道和一种非失活电压依赖性电流。用含有正常细胞外离子浓度(包括4 mM钾)的膜片吸管测量,大的、缓慢失活的通道斜率电导为44 pS。最大开放延迟为50 - 220毫秒,失活时间常数平均为350毫秒。通道开放会因先前的去极化而减少。这些通道对钾具有选择性,并被50 mM四乙铵(TEA)抑制。小的、快速失活的通道为14 pS,其动力学和电压依赖性与IA相似。膜片去极化还激活了一种非失活电压依赖性外向电流,其具有通道电导和/或动力学特性,以至于无法区分单个通道的开放和关闭。在存在50 mM TEA的情况下也能观察到这种电流,但在存在Co2+的情况下则观察不到,这些特性与其他人在海兔神经元中描述的外向氢离子电流相似。