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蛋白激酶C激活剂对小鼠神经母细胞瘤细胞中钠离子电流的多种作用。

Multiple effects of protein kinase C activators on Na+ currents in mouse neuroblastoma cells.

作者信息

Godoy C M, Cukierman S

机构信息

Department of Physiology, Loyola University Medical Center, Maywood, Illinois 60153.

出版信息

J Membr Biol. 1994 Jun;140(2):101-10. doi: 10.1007/BF00232898.

Abstract

The effects of externally applied different protein kinase C (PKC) activators on Na+ currents in mouse neuroblastoma cells were studied using the perforated-patch (nystatin-based) whole cell voltage clamp technique. Two diacylglycerol-like compounds, OAG (1-oleoyl-2-acetyl-sn-glycerol), and DOG (1-2-dioctanoyl-rac-glycerol) attenuated Na+ currents without affecting the time course of activation or inactivation. The reduction in Na+ current amplitude caused by OAG or DOG was dependent on membrane potential, being more intense at positive voltages. The steady-state activation curve was also unaffected by these substances. However, both OAG and DOG shifted the steady-state inactivation curve of Na+ currents to more hyperpolarized voltages. Surprisingly, phorbol esters did not affect Na+ currents. Cis-unsaturated fatty acids (linoleic, linolenic, and arachidonic) attenuated Na+ currents without modifying the steady-state activation. As with DOG and OAG, cis-unsaturated fatty acids also shifted the steady-state inactivation curve to more negative voltages. Interestingly, inward currents were more effectively attenuated by cis-fatty acids than outward currents. Oleic acid, also a cis-unsaturated fatty acid, enhanced Na+ currents. This enhancement was not accompanied by changes in kinetic or steady-state properties of currents. Enhancement of Na+ currents caused by oleate was voltage dependent, being stronger at negative voltages. The inhibitory or stimulatory effects caused by all PKC activators on Na+ currents were completely prevented by pretreating cells with PKC inhibitors (calphostin C, H7, staurosporine or polymyxin B). By themselves, PKC inhibitors did not affect membrane currents. Trans-unsaturated or saturated fatty acids, which do not activate PKC's, did not modify Na+ currents. Taken together, the experimental results suggest that PKC activation modulates the behavior of Na+ channels by at least three distinct mechanisms. Because qualitatively different results were obtained with different PKC activators, it is not clear how Na+ currents would respond to activation of PKC under physiological conditions.

摘要

采用基于制霉菌素的穿孔膜片全细胞电压钳技术,研究了外源性施加不同蛋白激酶C(PKC)激活剂对小鼠神经母细胞瘤细胞钠电流的影响。两种二酰基甘油样化合物,OAG(1-油酰基-2-乙酰基-sn-甘油)和DOG(1,2-二辛酰基-rac-甘油)可减弱钠电流,而不影响激活或失活的时间进程。OAG或DOG引起的钠电流幅度降低取决于膜电位,在正电压时更为明显。稳态激活曲线也不受这些物质的影响。然而,OAG和DOG都使钠电流的稳态失活曲线向更超极化的电压方向移动。令人惊讶的是,佛波酯不影响钠电流。顺式不饱和脂肪酸(亚油酸、亚麻酸和花生四烯酸)可减弱钠电流,而不改变稳态激活。与DOG和OAG一样,顺式不饱和脂肪酸也使稳态失活曲线向更负的电压方向移动。有趣的是,内向电流比外向电流更有效地被顺式脂肪酸减弱。油酸也是一种顺式不饱和脂肪酸,可增强钠电流。这种增强并不伴随着电流动力学或稳态特性的变化。油酸引起的钠电流增强是电压依赖性的,在负电压时更强。用PKC抑制剂(钙磷蛋白C、H7、星形孢菌素或多粘菌素B)预处理细胞可完全阻止所有PKC激活剂对钠电流的抑制或刺激作用。PKC抑制剂本身不影响膜电流。不激活PKC的反式不饱和或饱和脂肪酸不改变钠电流。综上所述,实验结果表明PKC激活至少通过三种不同机制调节钠通道的行为。由于不同的PKC激活剂得到了质的不同的结果,因此尚不清楚在生理条件下钠电流对PKC激活的反应如何。

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