Van Wart Audra, Matthews Gary
Graduate Program in Neuroscience, Department of Neurobiology and Behavior, State University of New York, Stony Brook, NY 11794-5230, USA.
Neurosci Lett. 2006 Aug 7;403(3):315-7. doi: 10.1016/j.neulet.2006.05.019. Epub 2006 Jun 6.
During the second and third postnatal weeks, there is a developmental switch from sodium channel isoform Na(v)1.2 to isoform Na(v)1.6 at initial segments and nodes of Ranvier in rat retinal ganglion cells. We used quantitative, real-time PCR to determine if the developmental appearance of Na(v)1.6 channels is accompanied by an increase in steady-state level of Na(v)1.6 mRNA in the retina. Between postnatal day 2 (P2) and P10, Na(v)1.6 levels did not change, but between P10 and P19, there was an approximately three-fold increase in Na(v)1.6 transcript levels. This coincides with the appearance of Na(v)1.6 channels in the retina and optic nerve. The steady-state level of Na(v)1.2 mRNA also increased during this same period, which suggests that the rise in Na(v)1.6 may be part of a general increase in sodium channel transcripts at about the time of eye opening at P14. The results are consistent with a developmental increase in steady-state transcripts giving rise to a corresponding increase in sodium channel protein expression.
在出生后的第二和第三周,大鼠视网膜神经节细胞起始节段和郎飞结处的钠通道亚型从Na(v)1.2转换为Na(v)1.6。我们使用定量实时PCR来确定Na(v)1.6通道的发育出现是否伴随着视网膜中Na(v)1.6 mRNA稳态水平的增加。在出生后第2天(P2)至P10之间,Na(v)1.6水平没有变化,但在P10至P19之间,Na(v)1.6转录本水平增加了约三倍。这与视网膜和视神经中Na(v)1.6通道的出现相吻合。在同一时期,Na(v)1.2 mRNA的稳态水平也增加了,这表明Na(v)1.6的增加可能是在P14睁眼时钠通道转录本普遍增加的一部分。结果与稳态转录本的发育性增加导致钠通道蛋白表达相应增加一致。