首页> 美国卫生研究院文献>The Journal of Neuroscience >Kv3.3b: a novel Shaw type potassium channel expressed in terminally differentiated cerebellar Purkinje cells and deep cerebellar nuclei
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Kv3.3b: a novel Shaw type potassium channel expressed in terminally differentiated cerebellar Purkinje cells and deep cerebellar nuclei

机译:Kv3.3b:在终末分化的小脑浦肯野细胞和小脑深核中表达的新型肖氏钾通道

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摘要

A two-step hybridization/subtraction procedure was employed to isolate markers for the later stages of Purkinje cell differentiation. From this screen, a novel Shaw potassium channel cDNA (Kv3.3b) was identified that is developmentally regulated. Expression of this channel is highly enriched in the brain, particularly in the cerebellum, where its expression is confined to Purkinje cells and deep cerebellar nuclei. Sequence analysis revealed that it is an alternatively spliced form of the mouse Kv3.3 gene, and that the previously reported Kv3.3 mRNA (Ghanshani et al., 1992) is not expressed in cerebellum. Expression of the Kv3.3b mRNA begins in cerebellar Purkinje cells between postnatal day 8 (P8) and P10 and continues through adulthood, coinciding with elaboration of the mature Purkinje cell dendritic arbor. The timing of expression of Kv3.3b mRNA is maintained in mixed, dissociated primary cerebellar cell culture. These results suggest that the Kv3.3b K+ channel function is restricted to terminally differentiated Purkinje cells, and that analysis of the mechanisms governing its expression in vivo and in vitro can reveal molecular mechanisms governing Purkinje cell differentiation.
机译:采用两步杂交/减法程序来分离用于浦肯野细胞分化后期的标志物。从这个屏幕上,确定了一个新的邵氏钾通道cDNA(Kv3.3b),其发育受到调控。该通道的表达高度富集于大脑,尤其是小脑,在该小脑中,其表达仅限于浦肯野细胞和小脑深核。序列分析显示它是小鼠Kv3.3基因的另一种剪接形式,先前报道的Kv3.3 mRNA(Ghanshani等,1992)不在小脑中表达。 Kv3.3b mRNA的表达开始于出生后第8天(P8)至P10的小脑Purkinje细胞,并持续到成年,与成熟的Purkinje细胞树突状乔木的形成相吻合。 Kv3.3b mRNA的表达时机在混合的,解离的原代小脑细胞培养物中得以维持。这些结果表明,Kv3.3b K +通道功能仅限于终末分化的浦肯野细胞,而对其在体内和体外表达的调控机制的分析可以揭示调控浦肯野细胞分化的分子机制。

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