Boiko Tatiana, Van Wart Audra, Caldwell John H, Levinson S Rock, Trimmer James S, Matthews Gary
Department of Neurobiology and Behavior, State University of New York, Stony Brook, New York 11794, USA.
J Neurosci. 2003 Mar 15;23(6):2306-13. doi: 10.1523/JNEUROSCI.23-06-02306.2003.
Voltage-dependent sodium channels cluster at high density at axon initial segments, where propagating action potentials are thought to arise, and at nodes of Ranvier. Here, we show that the sodium channel Na(v)1.6 is precisely localized at initial segments of retinal ganglion cells (RGCs), whereas a different isoform, Na(v)1.2, is found in the neighboring unmyelinated axon. During development, initial segments first expressed Na(v)1.2, and Na(v)1.6 appeared later, approximately in parallel with the onset of repetitive RGC firing. In Shiverer mice, Na(v)1.6 localization at the initial segment was unaffected, although Na(v)1.6 expression was severely disrupted in the aberrantly myelinated optic nerve. Targeting or retention of Na(v)1.6 requires molecular interactions that normally occur only at initial segments and nodes of Ranvier. Expression at nodes but not initial segments exhibits an additional requirement for intact myelination. Because of their high density at the initial segment, Na(v)1.6 channels may be crucial in determining neuronal firing properties.
电压依赖性钠通道在轴突起始段高密度聚集,一般认为动作电位在此产生,同时在郎飞结也有高密度聚集。在此,我们发现钠通道Na(v)1.6精确地定位于视网膜神经节细胞(RGC)的起始段,而在相邻的无髓鞘轴突中则发现了另一种亚型Na(v)1.2。在发育过程中,起始段首先表达Na(v)1.2,随后Na(v)1.6出现,大约与RGC重复放电的开始同步。在颤抖小鼠中,尽管在异常髓鞘化的视神经中Na(v)1.6的表达严重受损,但其在起始段的定位未受影响。Na(v)1.6的靶向或保留需要通常仅在郎飞结和轴突起始段发生的分子相互作用。在郎飞结而非起始段的表达对完整的髓鞘形成有额外要求。由于其在起始段的高密度,Na(v)1.6通道可能在决定神经元放电特性方面至关重要。