García D E, Cavalié A, Lux H D
Department of Neurophysiology, Max-Planck-Institut für Psychiatrie, Martinsried, Germany.
J Neurosci. 1994 Feb;14(2):545-53. doi: 10.1523/JNEUROSCI.14-02-00545.1994.
The regulation of calcium channel currents (ICa) induced by daily stimulation (1 hr) with 10 microM glutamate was studied in full differentiated hippocampal cells in culture. We report a specific enhancement of the high-voltage-activated current type (HVA ICa) ongoing over days. The density of HVA ICa increased about twofold after the second glutamate session, and this enhancement was still observed after the fifth day of treatment, while low-voltage-activated calcium currents (LVA ICa) remained unchanged. During glutamate application, a transient increase of intracellular calcium (Cai) was observed, followed by a slow decay within 2-3 min, and substantial recovery in about 10 min. Similarly, Cai transients induced by periodic membrane depolarization mimicked the long-term effect of glutamate on ICa. These results demonstrate for the first time an increase of ICa in a time frame of days. Since the effect of glutamate on ICa was prevented by cycloheximide, neosynthesis of channel proteins presumably supports this enhancement.
在培养的完全分化的海马细胞中,研究了用10微摩尔谷氨酸每日刺激(1小时)诱导的钙通道电流(ICa)的调节。我们报告了数天内持续存在的高电压激活电流类型(HVA ICa)的特异性增强。第二次谷氨酸处理后,HVA ICa的密度增加了约两倍,并且在处理的第五天后仍观察到这种增强,而低电压激活钙电流(LVA ICa)保持不变。在应用谷氨酸期间,观察到细胞内钙(Cai)短暂增加,随后在2 - 3分钟内缓慢衰减,并在约10分钟内基本恢复。同样,周期性膜去极化诱导的Cai瞬变模拟了谷氨酸对ICa的长期作用。这些结果首次证明了在数天的时间范围内ICa增加。由于谷氨酸对ICa的作用被放线菌酮阻止,通道蛋白的新合成可能支持这种增强。