Vijayaragavan Kausalia, Powell Andrew J, Kinghorn Ian J, Chahine Mohamed
Department of Medicine, Laval University, 2725 Chemin Sainte-Foy, Sainte-Foy, Que. G1V 4G5, Canada.
Biochem Biophys Res Commun. 2004 Jun 25;319(2):531-40. doi: 10.1016/j.bbrc.2004.05.026.
The nociceptive C-fibers of the dorsal root ganglion express several sodium channel isoforms that associate with one or more regulatory beta-subunits (beta1-beta4). To determine the effects of individual and combinations of the beta-subunit isoforms, we co-expressed Nav1.8 in combination with these beta-subunits in Xenopus oocytes. Whole-cell inward sodium currents were recorded using the two-microelectrode voltage clamp method. Our studies revealed that the co-expression beta1 alone or in combination with other beta-subunits enhanced current amplitudes, accelerated current decay kinetics, and negatively shifted the steady-state curves. In contrast, beta2 alone and in combination with beta1 altered steady-state inactivation of Nav1.8 to more depolarized potentials. Co-expression of beta3 shifted steady-state inactivation to more depolarized potentials; however, combined beta1beta3 expression caused no shift in channel availability. The results in this study suggest that the functional behavior of Nav1.8 will vary depending on the type of beta-subunit that expressed under normal and disease states.
背根神经节的伤害性C纤维表达几种与一种或多种调节性β亚基(β1 - β4)相关的钠通道亚型。为了确定β亚基亚型单独及组合的作用,我们在非洲爪蟾卵母细胞中将Nav1.8与这些β亚基共表达。使用双微电极电压钳法记录全细胞内向钠电流。我们的研究表明,单独或与其他β亚基组合共表达β1可增强电流幅度、加速电流衰减动力学并使稳态曲线负向移位。相比之下,单独的β2以及与β1组合可将Nav1.8的稳态失活改变为更去极化的电位。β3的共表达使稳态失活向更去极化的电位移位;然而,β1β3组合表达未导致通道可用性的移位。本研究结果表明,Nav1.8的功能行为将根据在正常和疾病状态下表达的β亚基类型而有所不同。