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锌离子(Zn²⁺)减缓Ca(V)3.3通道门控动力学:对丘脑皮质活动的影响

Zn(2+) slows down Ca(V)3.3 gating kinetics: implications for thalamocortical activity.

作者信息

Cataldi M, Lariccia V, Marzaioli V, Cavaccini A, Curia G, Viggiano D, Canzoniero L M T, di Renzo G, Avoli M, Annunziato L

机构信息

Divisione di Farmacologia, Dipartimento di Neuroscienze, Facoltà di Medicina e Chirurgia, Università di Napoli Federico II, Naples, Italy.

出版信息

J Neurophysiol. 2007 Oct;98(4):2274-84. doi: 10.1152/jn.00889.2006. Epub 2007 Aug 15.

Abstract

We employed whole cell patch-clamp recordings to establish the effect of Zn(2+) on the gating the brain specific, T-type channel isoform Ca(V)3.3 expressed in HEK-293 cells. Zn(2+) (300 microM) modified the gating kinetics of this channel without influencing its steady-state properties. When inward Ca(2+) currents were elicited by step depolarizations at voltages above the threshold for channel opening, current inactivation was significantly slowed down while current activation was moderately affected. In addition, Zn(2+) slowed down channel deactivation but channel recovery from inactivation was only modestly changed. Zn(2+) also decreased whole cell Ca(2+) permeability to 45% of control values. In the presence of Zn(2+), Ca(2+) currents evoked by mock action potentials were more persistent than in its absence. Furthermore, computer simulation of action potential generation in thalamic reticular cells performed to model the gating effect of Zn(2+) on T-type channels (while leaving the kinetic parameters of voltage-gated Na(+) and K(+) unchanged) revealed that Zn(2+) increased the frequency and the duration of burst firing, which is known to depend on T-type channel activity. In line with this finding, we discovered that chelation of endogenous Zn(2+) decreased the frequency of occurrence of ictal-like epileptiform discharges in rat thalamocortical slices perfused with medium containing the convulsant 4-aminopyridine (50 microM). These data demonstrate that Zn(2+) modulates Ca(V)3.3 channel gating thus leading to increased neuronal excitability. We also propose that endogenous Zn(2+) may have a role in controlling thalamocortical oscillations.

摘要

我们采用全细胞膜片钳记录技术来确定锌离子(Zn(2+))对在人胚肾293(HEK-293)细胞中表达的脑特异性T型通道亚型Ca(V)3.3门控的影响。锌离子(300微摩尔)改变了该通道的门控动力学,而不影响其稳态特性。当在高于通道开放阈值的电压下通过阶跃去极化引发内向钙离子电流时,可以显著减慢电流失活,而电流激活受到中度影响。此外,锌离子减慢了通道去激活,但通道从失活状态的恢复仅略有变化。锌离子还将全细胞钙离子通透性降低至对照值的45%。在存在锌离子的情况下,模拟动作电位诱发的钙离子电流比不存在时更持久。此外,通过对丘脑网状细胞动作电位产生进行计算机模拟,以模拟锌离子对T型通道的门控作用(同时保持电压门控钠离子和钾离子的动力学参数不变),结果显示锌离子增加了爆发式放电的频率和持续时间,而爆发式放电已知依赖于T型通道活性。与这一发现一致,我们发现螯合内源性锌离子可降低在含有惊厥剂4-氨基吡啶(50微摩尔)的培养基中灌注的大鼠丘脑皮质切片中癫痫样痫样放电的发生频率。这些数据表明,锌离子调节Ca(V)3.3通道门控,从而导致神经元兴奋性增加。我们还提出,内源性锌离子可能在控制丘脑皮质振荡中发挥作用。

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