Connor J A, Kretz R, Shapiro E
J Physiol. 1986 Jun;375:625-42. doi: 10.1113/jphysiol.1986.sp016137.
We have utilized the Ca2+ indicator dye, Arsenazo III, to examine the role of presynaptic Ca2+ concentration in two types of synaptic plasticity observed at the synapses of cell L10 in Aplysia californica; post-tetanic potentiation (p.t.p. - the increased transmitter release which follows high frequency stimulation), and resting membrane potential modulation of release. Intracellular Ca2+ was monitored in the cell body and main neurites of L10 injected with Arsenazo III. Tetanic stimulation caused an increase in intracellular Ca2+ concentration that decayed, after tetanus, with fast and slow time constants which paralleled the time course of decay of p.t.p. When the voltage-sensitive Ca2+ current was reduced by removing external Ca2+ (0 mM-Ca2+, 4 mM-EGTA) or by blocking Ca2+ channels with divalent cation channel blocker (4 mM-Cd2+), tetanic stimulation did not cause increases in Arsenazo absorbance even when Na+ currents were not blocked. This finding suggests that Ca2+ entering the cell through voltage-dependent Ca2+ channels was the major source of Ca2+ which accumulated during the tetanus. Transmitter release is increased when L10 is maintained at a depolarized membrane potential, and is decreased when L10 is hyperpolarized. We found that the base-line Arsenazo absorbance signal in L10 increased when L10 was depolarized from -60 to -40 mV and decreased when L10 was hyperpolarized. This finding supports the idea that the steady-state Ca2+ concentration contributes to the membrane-potential modulation of transmitter release. These results support the idea that transmitter release can be modulated by the residual or resting Ca2+ concentration of the presynaptic cell.
我们利用钙离子指示剂偶氮胂III,来研究突触前钙离子浓度在加州海兔L10细胞突触处观察到的两种突触可塑性中的作用;强直后增强(p.t.p.——高频刺激后递质释放增加)以及释放的静息膜电位调节。在注射了偶氮胂III的L10细胞体和主要神经突中监测细胞内钙离子。强直刺激导致细胞内钙离子浓度增加,在强直刺激后,其以快速和慢速时间常数衰减,这与强直后增强的衰减时间进程平行。当通过去除细胞外钙离子(0 mM - Ca2+,4 mM - EGTA)或用二价阳离子通道阻滞剂(4 mM - Cd2+)阻断钙离子通道来降低电压敏感性钙离子电流时,即使钠离子电流未被阻断,强直刺激也不会导致偶氮胂吸光度增加。这一发现表明,通过电压依赖性钙离子通道进入细胞的钙离子是强直刺激期间积累的钙离子的主要来源。当L10维持在去极化膜电位时递质释放增加,而当L10超极化时递质释放减少。我们发现,当L10从 - 60 mV去极化到 - 40 mV时,L10中的基线偶氮胂吸光度信号增加,而当L10超极化时则降低。这一发现支持了稳态钙离子浓度有助于递质释放的膜电位调节这一观点。这些结果支持了递质释放可由突触前细胞的残余或静息钙离子浓度调节的观点。