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利用大规模诱变和一种新型快速定位策略鉴定出两个新的Pmp22小鼠突变体。

Identification of two new Pmp22 mouse mutants using large-scale mutagenesis and a novel rapid mapping strategy.

作者信息

Isaacs A M, Davies K E, Hunter A J, Nolan P M, Vizor L, Peters J, Gale D G, Kelsell D P, Latham I D, Chase J M, Fisher E M, Bouzyk M M, Potter A, Masih M, Walsh F S, Sims M A, Doncaster K E, Parsons C A, Martin J, Brown S D, Rastan S, Spurr N K, Gray I C

机构信息

Department of Human Anatomy and Genetics, University of Oxford, Oxford OX1 3QX, UK.

出版信息

Hum Mol Genet. 2000 Jul 22;9(12):1865-71. doi: 10.1093/hmg/9.12.1865.

Abstract

Mouse mutants have a key role in discerning mammalian gene function and modelling human disease; however, at present mutants exist for only 1-2% of all mouse genes. In order to address this phenotype gap, we have embarked on a genome-wide, phenotype-driven, large-scale N-ethyl-N--nitrosourea (ENU) mutagenesis screen for dominant mutations of clinical and pharmacological interest in the mouse. Here we describe the identification of two similar neurological phenotypes and determination of the underlying mutations using a novel rapid mapping strategy incorporating speed back-crosses and high throughput genotyping. Two mutant mice were identified with marked resting tremor and further characterized using the SHIRPA behavioural and functional assessment protocol. Back-cross animals were generated using in vitro fertilization and genome scans performed utilizing DNA pools derived from multiple mutant mice. Both mutants were mapped to a region on chromosome 11 containing the peripheral myelin protein 22 gene (Pmp22). Sequence analysis revealed novel point mutations in Pmp22 in both lines. The first mutation, H12R, alters the same amino acid as in the severe human peripheral neuropathy Dejerine Sottas syndrome and Y153TER in the other mutant truncates the Pmp22 protein by seven amino acids. Histological analysis of both lines revealed hypo-myelination of peripheral nerves. This is the first report of the generation of a clinically relevant neurological mutant and its rapid genetic characterization from a large-scale mutagenesis screen for dominant phenotypes in the mouse, and validates the use of large-scale screens to generate desired clinical phenotypes in mice.

摘要

小鼠突变体在识别哺乳动物基因功能和模拟人类疾病方面发挥着关键作用;然而,目前所有小鼠基因中只有1%-2%存在突变体。为了填补这一表型差距,我们开展了一项全基因组、表型驱动的大规模N-乙基-N-亚硝基脲(ENU)诱变筛选,以寻找小鼠中具有临床和药理学意义的显性突变。在此,我们描述了两种相似神经学表型的鉴定,以及使用一种结合快速回交和高通量基因分型的新型快速定位策略确定潜在突变。鉴定出两只具有明显静息震颤的突变小鼠,并使用SHIRPA行为和功能评估方案进行进一步表征。通过体外受精产生回交动物,并利用来自多只突变小鼠的DNA池进行基因组扫描。两个突变体均被定位到11号染色体上包含外周髓鞘蛋白22基因(Pmp22)的区域。序列分析显示两个品系的Pmp22中均存在新的点突变。第一个突变H12R改变的氨基酸与严重的人类外周神经病变Dejerine Sottas综合征相同,另一个突变体中的Y153TER使Pmp22蛋白截短了七个氨基酸。两个品系的组织学分析均显示外周神经髓鞘形成减少。这是首次报道从小鼠显性表型的大规模诱变筛选中产生具有临床相关性的神经学突变体及其快速基因表征,并验证了使用大规模筛选在小鼠中产生所需临床表型的方法。

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