Carabelli V, Lovallo M, Magnelli V, Zucker H, Carbone E
Dipartimento di Neuroscienze, Corso Raffaello 30, Torino, Italy.
Biophys J. 1996 May;70(5):2144-54. doi: 10.1016/S0006-3495(96)79780-1.
The voltage-dependent inhibition of single N-type Ca(2+) channels by noradrenaline (NA) and the delta-opioid agonist D-Pen(2)-D-Pen (5)-enkephalin (DPDPE) was investigated in cell-attached patches of human neuroblastoma IMR32 cells with 100 mM Ba(2+) and 5 microM nifedipine to block L-type channels. In 70% of patches, addition of 20 microM NA + 1 microM DPDPE delayed markedly the first channel openings, causing a four- to fivefold increase of the first latency at +20 mV. The two agonists or NA alone decreased also by 35% the open probability (P(o)), prolonged partially the mean closed time, and increased the number of null sweeps. In contrast, NA + DPDPE had little action on the single-channel conductance (19 versus 19.2 pS) and minor effects on the mean open time. Similarly to macroscopic Ba(2+) currents, the ensemble currents were fast activating at control but slowly activating and depressed with the two agonists. Inhibition of single N-type channels was effectively removed (facilitated) by short and large depolarizations. Facilitatory pre-pulses increased P(o) significantly and decreased fourfold the first latency. Ensemble currents were small and slowly activating before pre-pulses and became threefold larger and fast decaying after facilitation. Our data suggest that slowdown of Ca(2+) channel activation by transmitters is mostly due to delayed transitions from a modified to a normal (facilitated) gating mode. This single-channel gating modulation could be well simulated by a Monte Carlo method using previously proposed kinetic models predicting marked prolongation of first channel openings.
在人神经母细胞瘤IMR32细胞的细胞贴附膜片上,使用100 mM Ba(2+)和5 μM硝苯地平阻断L型通道,研究了去甲肾上腺素(NA)和δ-阿片受体激动剂D- Pen(2)-D- Pen(5)-脑啡肽(DPDPE)对单个N型Ca(2+)通道的电压依赖性抑制作用。在70%的膜片中,加入20 μM NA + 1 μM DPDPE可显著延迟第一个通道开放,在+20 mV时使第一个潜伏期增加4至5倍。两种激动剂或单独的NA也使开放概率(P(o))降低35%,部分延长了平均关闭时间,并增加了零扫描次数。相比之下,NA + DPDPE对单通道电导影响较小(分别为19和19.2 pS),对平均开放时间影响较小。与宏观Ba(2+)电流相似,整体电流在对照时快速激活,但在两种激动剂作用下激活缓慢且受到抑制。通过短暂的大幅度去极化可有效消除(促进)单个N型通道的抑制作用。促进性预脉冲可显著增加P(o),并使第一个潜伏期缩短4倍。预脉冲前整体电流较小且激活缓慢,促进后增大3倍且快速衰减。我们的数据表明,递质导致Ca(2+)通道激活减慢主要是由于从修饰的门控模式向正常(促进)门控模式的转变延迟。使用先前提出的预测第一个通道开放显著延长的动力学模型,通过蒙特卡罗方法可以很好地模拟这种单通道门控调制。