Centre de Recherche en Neurobiologie et Neurophysiologie de Marseille, UMR 6231, CNRS, Université de la Méditerranée, CS80011, Bd Pierre Dramard, 13344 Marseille Cedex 15, France.
J Physiol. 2010 Feb 15;588(Pt 4):651-70. doi: 10.1113/jphysiol.2010.183798.
Cerebellar granule (CG) cells generate high-frequency action potentials that have been proposed to depend on the unique properties of their voltage-gated ion channels. To address the in vivo function of Nav1.6 channels in developing and mature CG cells, we combined the study of the developmental expression of Nav subunits with recording of acute cerebellar slices from young and adult granule-specific Scn8a KO mice. Nav1.2 accumulated rapidly at early-formed axon initial segments (AISs). In contrast, Nav1.6 was absent at early postnatal stages but accumulated at AISs of CG cells from P21 to P40. By P40-P65, both Nav1.6 and Nav1.2 co-localized at CG cell AISs. By comparing Na(+) currents in mature CG cells (P66-P74) from wild-type and CG-specific Scn8a KO mice, we found that transient and resurgent Na(+) currents were not modified in the absence of Nav1.6 whereas persistent Na(+) current was strongly reduced. Action potentials in conditional Scn8a KO CG cells showed no alteration in threshold and overshoot, but had a faster repolarization phase and larger post-spike hyperpolarization. In addition, although Scn8a KO CG cells kept their ability to fire action potentials at very high frequency, they displayed increased interspike-interval variability and firing irregularity in response to sustained depolarization. We conclude that Nav1.6 channels at axon initial segments contribute to persistent Na(+) current and ensure a high degree of temporal precision in repetitive firing of CG cells.
小脑颗粒细胞(CG)产生高频动作电位,这些动作电位被认为依赖于其电压门控离子通道的独特特性。为了研究 Nav1.6 通道在发育中和成熟 CG 细胞中的体内功能,我们将 Nav 亚基的发育表达研究与来自年轻和成年颗粒特异性 Scn8a KO 小鼠的急性小脑切片记录相结合。Nav1.2 在早期形成的轴突起始段(AIS)中迅速积累。相比之下,Nav1.6 在出生后的早期阶段不存在,但在 P21 至 P40 期间在 CG 细胞的 AIS 处积累。到 P40-P65,Nav1.6 和 Nav1.2 都在 CG 细胞 AIS 处共定位。通过比较野生型和 CG 特异性 Scn8a KO 小鼠成熟 CG 细胞(P66-P74)中的 Na+电流,我们发现瞬时和恢复性 Na+电流在没有 Nav1.6 的情况下没有改变,而持续性 Na+电流则强烈减少。条件性 Scn8a KO CG 细胞中的动作电位在阈值和超射方面没有改变,但复极化阶段更快,峰后超极化更大。此外,尽管 Scn8a KO CG 细胞保持了在非常高频率下产生动作电位的能力,但它们在持续去极化时显示出更高的峰间间隔变异性和不规则性。我们得出结论,AIS 处的 Nav1.6 通道有助于持续性 Na+电流,并确保 CG 细胞重复放电具有高度的时间精度。