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小鼠突变体艾姆斯华尔兹新等位基因内耳的神经上皮缺陷

Neuroepithelial defects of the inner ear in a new allele of the mouse mutation Ames waltzer.

作者信息

Alagramam K N, Zahorsky-Reeves J, Wright C G, Pawlowski K S, Erway L C, Stubbs L, Woychik R P

机构信息

Department of Pediatrics, Rainbow Babies and Children's Hospital, Case Western Reserve University, Cleveland, OH 44106, USA.

出版信息

Hear Res. 2000 Oct;148(1-2):181-91. doi: 10.1016/s0378-5955(00)00152-0.

Abstract

This report presents new findings regarding a recessive insertional mutation in the transgenic line TgN2742Rpw that causes deafness and circling behavior in mice homozygous for the mutation. The mutant locus was mapped to a region on mouse chromosome 10 close to three spontaneous recessive mutations causing deafness: Ames waltzer (av), Waltzer (v), and Jackson circler (jc). Complementation testing revealed that the TgN2742Rpw mutation is allelic with av. Histological and auditory brainstem response (ABR) evaluation of animals that have the new allele balanced with the av(J) allele (called compound heterozygotes, TgN2742Rpw/av(J)) supports our genetic analysis. ABR evaluation shows complete absence of auditory response throughout the life span of TgN2742Rpw/av(J) compound heterozygotes. Scanning electron microscopy revealed abnormalities of inner and outer hair cell stereocilia in the cochleae of TgN2742Rpw mutants at 10 days after birth (DAB). The organ of Corti subsequently undergoes degeneration, leading to nearly complete loss of the cochlear neuroepithelium in older mutants by about 50 DAB. The vestibular neuroepithelia remain morphologically normal until at least 30 DAB. However, by 50 days, degenerative changes are evident in the saccular macula, which progresses to total loss of the saccular neuroepithelium in older animals. The new allele of av reported here will be designated av(TgN2742Rpw).

摘要

本报告展示了关于转基因品系TgN2742Rpw中一个隐性插入突变的新发现,该突变在纯合小鼠中会导致耳聋和转圈行为。突变位点被定位到小鼠10号染色体上靠近三个导致耳聋的自发隐性突变的区域:艾姆斯华尔兹(av)、华尔兹(v)和杰克逊转圈(jc)。互补试验表明,TgN2742Rpw突变与av等位基因相同。对携带新等位基因并与av(J)等位基因平衡的动物(称为复合杂合子,TgN2742Rpw/av(J))进行组织学和听觉脑干反应(ABR)评估,支持了我们的遗传分析。ABR评估显示,TgN2742Rpw/av(J)复合杂合子在整个寿命期内完全没有听觉反应。扫描电子显微镜显示,出生后10天(DAB)的TgN2742Rpw突变体耳蜗内、外毛细胞静纤毛存在异常。柯蒂氏器随后发生退化,导致老年突变体中约50 DAB时耳蜗神经上皮几乎完全丧失。前庭神经上皮在至少30 DAB之前形态保持正常。然而,到50天时,球囊斑出现明显的退化变化,在老年动物中发展为球囊神经上皮完全丧失。这里报道的av新等位基因将被命名为av(TgN2742Rpw)。

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