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Ca2(+)-activated K+ current involvement in neuronal function revealed by in situ single-channel analysis in Helix neurones.

机译:通过螺旋神经元的原位单通道分析揭示了Ca2(+)激活的K +当前参与神经元功能。

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摘要

1. The properties of single calcium-activated potassium channels (or C-channels) were studied in cell-attached patches using the patch-clamp technique. Experiments were performed on identified Ca2(+)-dependent U cells in juvenile specimens (1-2 months old) of Helix aspersa. 2. The criteria used to identify C-channels were based on comparison between macroscopic C-currents and currents reconstructed from unitary recordings. Both currents had a slow activation rate at large positive potentials which turned into fast activation after large Ca2+ entries. Both currents were blocked by intracellularly injected EGTA. 3. The unitary conductance in normal (5 mM) or reduced (0.5 mM) [K+]o ranged from 24 to 65 pS (mean +/- S.D., 48 +/- 13; n = 64). With 85-110 mM [K+]o, which is approximately equal to the internal [K+], the conductance was 64 pS and the reversal potential was approximately 0 mV. 4. C-channels in U cells were distributed in clusters of three to ten channels (mean 5.05 channels in seventy-five patches). Calcium channels were present in patches containing clustered C-channels. C-channels within clusters behaved independently. 5. With patch electrode containing 8 mM-calcium, C-channels opened transiently upon patch depolarization. Reopenings in quiescent depolarized patches were induced by whole-cell spikes triggered by current pulses applied to an intracellular electrode. Apparent inactivation of C-channels in depolarized patches was in fact due to a decrease in [Ca2+]i resulting from inactivation of Ca2+ channels. 6. Calcium-free saline solutions in the patch electrodes prevented C-channels from opening upon patch depolarization. Entry of calcium through the surrounding membrane induced delayed openings in the patch. Peak opening probability Po occurred 330 +/- 30 ms after a brief Ca2+ entry with a lag period of 50-80 ms. With patch electrodes filled with Ca2(+)-containing saline solutions and under conditions which maximized C-channel opening, peak Po was reached in 20-50 ms. The same value was observed for the whole-cell C-current. 7. The peak Po at a given patch potential and in response to a whole-cell spike was not altered by a previous long-lasting patch depolarization, or by producing several successive Ca2+ entries. Thus, C-channels did not appear to be inactivated by depolarization or increase in [Ca2+]i. 8. C-channels were found to be relatively highly voltage dependent, with an e-fold increase in Po per 14.9 mV increase in potential.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.使用膜片钳技术研究了细胞附着膜片中单个钙激活钾通道(或C通道)的特性。实验是在螺旋藻的少年标本(1-2个月大)中对确定的依赖Ca2 +的U细胞进行的。 2.用于识别C通道的标准基于宏观C电流与从单一记录重建的电流之间的比较。两种电流在大的正电势下均具有较慢的活化速率,而在大量的Ca2 +进入后变为快速活化。两种电流均被细胞内注射的EGTA阻断。 3.正常(5 mM)或降低(0.5 mM)[K +] o时的单位电导范围为24到65 pS(平均+/- S.D.,48 +/- 13; n = 64)。对于85-110 mM [K +] o,大约等于内部[K +],电导为64 pS,反向电势约为0 mV。 4. U细胞中的C通道以3到10个通道的簇的形式分布(在75个面片中平均为5.05通道)。钙通道存在于包含簇状C通道的贴剂中。群集中的C通道独立运行。 5.对于包含8 mM钙的贴片电极,贴片去极化后C通道会瞬时打开。静态去极化斑块的重新开放是由施加于细胞内电极的电流脉冲触发的全细胞尖峰诱导的。实际上,去极化斑块中C通道的明显失活实际上是由于Ca2 +通道失活导致[Ca2 +] i减少所致。 6.贴片电极中的无钙盐溶液可防止C通道在贴片去极化时打开。钙通过周围的膜进入会导致贴剂中的开口延迟。短暂的Ca2 +进入后,峰值打开概率Po出现330 +/- 30 ms,滞后时间为50-80 ms。用填充有含Ca2(+)的盐溶液的贴片电极,在最大C通道打开的条件下,在20-50 ms内达到峰值Po。对于全细胞C电流观察到相同的值。 7.在给定的贴片电势下以及响应于全细胞尖峰时的峰值Po不会因先前的持久贴片去极化或产生多个连续的Ca2 +条目而改变。因此,C通道似乎没有因去极化或[Ca2 +] i的增加而失活。 8.发现C通道电压依赖性相对较高,每增加14.9 mV电位,Po就会增加e倍。(抽象截断为400字)

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