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Electrophysiological properties of two axonal sodium channels Nav1.2 and Nav1.6 expressed in mouse spinal sensory neurones

机译:在小鼠脊髓感觉神经元中表达的两个轴突钠通道Nav1.2和Nav1.6的电生理特性

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摘要

Sodium channels Nav1.2 and Nav1.6 are both normally expressed along premyelinated and myelinated axons at different stages of maturation and are also expressed in a subset of demyelinated axons, where coexpression of Nav1.6 together with the Na+/Ca2+ exchanger is associated with axonal injury. It has been difficult to distinguish the currents produced by Nav1.2 and Nav1.6 in native neurones, and previous studies have not compared these channels within neuronal expression systems. In this study, we have characterized and directly compared Nav1.2 and Nav1.6 in a mammalian neuronal cell background and demonstrate differences in their properties that may affect neuronal behaviour. The Nav1.2 channel displays more depolarized activation and availability properties that may permit conduction of action potentials, even with depolarization. However, Nav1.2 channels show a greater accumulation of inactivation at higher frequencies of stimulation (20–100 Hz) than Nav1.6 and thus are likely to generate lower frequencies of firing. Nav1.6 channels produce a larger persistent current that may play a role in triggering reverse Na+/Ca2+ exchange, which can injure demyelinated axons where Nav1.6 and the Na+/Ca2+ exchanger are colocalized, while selective expression of Nav1.2 may support action potential electrogenesis, at least at lower frequencies, while producing a smaller persistent current.
机译:钠通道Nav1.2和Nav1.6都通常在成熟的不同阶段沿髓鞘前轴突和髓鞘轴突表达,也存在于脱髓鞘轴突的子集中,其中Nav1.6与Na + / Ca 2 + 交换子与轴突损伤有关。很难区分Nav1.2和Nav1.6在天然神经元中产生的电流,并且以前的研究没有在神经元表达系统中比较这些通道。在这项研究中,我们已经表征并直接比较了哺乳动物神经元细胞背景中的Nav1.2和Nav1.6,并证明了它们的性质差异可能会影响神经元的行为。 Nav1.2通道显示更多的去极化激活和可用性属性,即使在去极化的情况下,也可以允许动作电位的传导。但是,与Nav1.6相比,Nav1.2通道在较高的刺激频率(20-100 Hz)上显示出更大的失活积累,因此很可能产生较低的发射频率。 Nav1.6通道产生较大的持续电流,这可能在触发反向Na + / Ca 2 + 交换中起作用,这可能会损害Nav1.6和Na + / Ca 2 + 交换子是共定位的,而Nav1.2的选择性表达可能支持动作电位的电化,至少在较低的频率下,同时产生较小的持续电流。

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