Strong J A, Fox A P, Tsien R W, Kaczmarek L K
Nature. 1987;325(6106):714-7. doi: 10.1038/325714a0.
The modulation of voltage-activated calcium currents by protein kinases provides excitable cells with a mechanism for regulating their electrical behaviour. At the single channel level, modulation of calcium current has, to date, been characterized only in cardiac muscle, where beta-adrenergic agonists, acting through cyclic AMP-dependent protein kinase, enhance the calcium current by increasing channel availability and opening. We now report that enhancement of calcium current in the peptidergic bag cell neurons of Aplysia by protein kinase C occurs through a different mechanism, the recruitment of a previously covert class of calcium channel. Under control conditions, bag cell neurons contain only one class of voltage-activated calcium channel with a conductance of approximately 12 pS. After exposure to agents that activate protein kinase C, these neurons also express a second class of calcium channel with a different unitary conductance (approximately 24 pS) that is never seen in untreated cells.
蛋白激酶对电压激活钙电流的调节为可兴奋细胞提供了一种调节其电活动的机制。在单通道水平上,迄今为止,钙电流的调节仅在心肌中得到了表征,在心肌中,β-肾上腺素能激动剂通过环磷酸腺苷依赖性蛋白激酶起作用,通过增加通道可用性和开放来增强钙电流。我们现在报告,蛋白激酶C对海兔肽能袋状细胞神经元钙电流的增强是通过一种不同的机制发生的,即募集一类先前隐蔽的钙通道。在对照条件下,袋状细胞神经元仅含有一类电导约为12 pS的电压激活钙通道。在暴露于激活蛋白激酶C的试剂后,这些神经元还表达了另一类具有不同单位电导(约24 pS)的钙通道,而在未处理的细胞中从未见过这种通道。