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修饰基因对钠通道Scn8a(Na(v)1.6)缺陷的分子和病理效应

Molecular and pathological effects of a modifier gene on deficiency of the sodium channel Scn8a (Na(v)1.6).

作者信息

Kearney Jennifer A, Buchner David A, De Haan Georgius, Adamska Maja, Levin Stephen I, Furay Amy R, Albin Roger L, Jones Julie M, Montal Mauricio, Stevens Martin J, Sprunger Leslie K, Meisler Miriam H

机构信息

Department of Human Genetics, University of Michigan School of Medicine, Ann Arbor 48109, USA.

出版信息

Hum Mol Genet. 2002 Oct 15;11(22):2765-75. doi: 10.1093/hmg/11.22.2765.

Abstract

Scn8a encodes an abundant, widely distributed voltage-gated sodium channel found throughout the central and peripheral nervous systems. Mice with different mutant alleles of Scn8a provide models of the movement disorders ataxia, dystonia, tremor and progressive paralysis. We previously reported that the phenotype of the hypomorphic allele of Scn8a, medJ, is dependent upon an unlinked modifier locus, Scnm1. Strain C57BL/6J carries a sensitive allele of the modifier locus that results in juvenile lethality. We now provide evidence that the modifier acts on the splicing efficiency of the mutant splice donor site. Mutant mice display either 90% or 95% reduction in the proportion of correctly spliced mRNA, depending on modifier genotype. The abundance of the channel protein, Na(v)1.6, is also reduced by an order of magnitude in medJ mice, resulting in delayed maturation of nodes of Ranvier, slowed nerve conduction velocity, reduced muscle mass and reduction of brain metabolic activity. medJ mice provide a model for the physiological effects of sodium channel deficiency and the molecular mechanism of bigenic disease.

摘要

Scn8a编码一种在中枢和外周神经系统中广泛分布且含量丰富的电压门控钠通道。携带Scn8a不同突变等位基因的小鼠为共济失调、肌张力障碍、震颤和进行性麻痹等运动障碍提供了模型。我们之前报道过,Scn8a的次等位基因medJ的表型依赖于一个不连锁的修饰基因座Scnm1。C57BL/6J品系携带修饰基因座的一个敏感等位基因,该等位基因会导致幼年期致死。我们现在提供证据表明,该修饰基因作用于突变剪接供体位点的剪接效率。根据修饰基因的基因型,突变小鼠正确剪接的mRNA比例会降低90%或95%。medJ小鼠中通道蛋白Na(v)1.6的丰度也会降低一个数量级,导致郎飞结成熟延迟、神经传导速度减慢、肌肉质量减少以及脑代谢活性降低。medJ小鼠为钠通道缺陷的生理效应以及双基因疾病的分子机制提供了一个模型。

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