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一种新的ENU诱导的小鼠震颤等位基因导致严重的中枢神经系统髓鞘形成异常。

A new ENU-induced allele of mouse quaking causes severe CNS dysmyelination.

作者信息

Noveroske Janice K, Hardy Rebecca, Dapper Jason D, Vogel Hannes, Justice Monica J

机构信息

Department of Molecular and Human Genetics, Baylor College of Medicine, One Baylor Plaza, S413, Houston, Texas 77030, USA.

出版信息

Mamm Genome. 2005 Sep;16(9):672-82. doi: 10.1007/s00335-005-0035-x. Epub 2005 Oct 20.

Abstract

The mutant allelic series of the mouse quaking gene consists of the spontaneous quaking(viable) (qk(v)) allele, which is homozygous viable with a dysmyelination phenotype, and four ENU-induced alleles (qk(kt 1), qk(k2), qk(kt3/4), and qk(l-1)), which are homozygous embryonic lethal. Here we report the isolation of qk(e5), the first ENU-induced viable allele of quaking. Unlike qk(v)/qk(v), qk(e5)/qk(e5) animals have early-onset seizures, severe ataxia, and a dramatically reduced lifespan. Ultrastructural analysis of qk(e5)/qk(e5) brains reveals severe dysmyelination when compared with both wild-type and qk(v)/qk(v) brains. In addition, Calbindin detection in young adult qk(e5)/qk(e5) mice reveals Purkinje cell axonal swellings indicative of neurodegeneration , which is not seen in young adult qk(v)/qk(v) mice. Although the molecular defect in the qk(e5) allele is not evident by sequencing, protein expression studies show that qk(e5)/qk(e5) postnatal oligodendrocytes lack the QKI-6 and QKI-7 isoforms and have reduced QKI-5 levels. The oligodendrocyte developmental markers PDGF alpha R, NG 2, O4, CNP, and MBP are also present in the qk(e5)/qk(e5) postnatal brain although CNP and MBP levels are considerably reduced. Because the qk(v) allele is a large deletion that affects the expression of three genes, the new neurologic qk(e5) allele is an important addition to this allelic series.

摘要

小鼠震颤基因的突变等位基因系列包括自发的震颤(可存活)(qk(v))等位基因,该等位基因纯合时可存活,但具有脱髓鞘表型,以及四个ENU诱导的等位基因(qk(kt 1)、qk(k2)、qk(kt3/4)和qk(l-1)),这些等位基因纯合时胚胎致死。在此,我们报告了qk(e5)的分离,这是第一个ENU诱导的震颤可存活等位基因。与qk(v)/qk(v)不同,qk(e5)/qk(e5)动物有早发性癫痫、严重共济失调,寿命显著缩短。与野生型和qk(v)/qk(v)大脑相比,对qk(e5)/qk(e5)大脑的超微结构分析显示严重脱髓鞘。此外,在年轻成年qk(e5)/qk(e5)小鼠中检测钙结合蛋白发现浦肯野细胞轴突肿胀,表明存在神经退行性变,而在年轻成年qk(v)/qk(v)小鼠中未观察到这种情况。尽管通过测序未发现qk(e5)等位基因的分子缺陷,但蛋白质表达研究表明,qk(e5)/qk(e5)出生后的少突胶质细胞缺乏QKI-6和QKI-7异构体,且QKI-5水平降低。少突胶质细胞发育标志物血小板衍生生长因子α受体(PDGF alpha R)、NG 2、O4、2',3'-环核苷酸3'-磷酸二酯酶(CNP)和髓鞘碱性蛋白(MBP)在qk(e5)/qk(e5)出生后的大脑中也存在,尽管CNP和MBP水平显著降低。由于qk(v)等位基因是一个影响三个基因表达的大缺失,新的神经学qk(e5)等位基因是该等位基因系列的重要补充。

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