首页> 外文期刊>The American Journal of Human Genetics >Mutations in Grxcr1 are the basis for inner ear dysfunction in the pirouette mouse.
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Mutations in Grxcr1 are the basis for inner ear dysfunction in the pirouette mouse.

机译:Grxcr1中的突变是竖趾小鼠内耳功能障碍的基础。

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Recessive mutations at the mouse pirouette (pi) locus result in hearing loss and vestibular dysfunction due to neuroepithelial defects in the inner ear. Using a positional cloning strategy, we have identified mutations in the gene Grxcr1 (glutaredoxin cysteine-rich 1) in five independent allelic strains of pirouette mice. We also provide sequence data of GRXCR1 from humans with profound hearing loss suggesting that pirouette is a model for studying the mechanism of nonsyndromic deafness DFNB25. Grxcr1 encodes a 290 amino acid protein that contains a region of similarity to glutaredoxin proteins and a cysteine-rich region at its C terminus. Grxcr1 is expressed in sensory epithelia of the inner ear, and its encoded protein is localized along the length of stereocilia, the actin-filament-rich mechanosensory structures at the apical surface of auditory and vestibular hair cells. The precise architecture of hair cell stereocilia is essential for normal hearing. Loss of function of Grxcr1 in homozygous pirouette mice results in abnormally thin and slightly shortened stereocilia. When overexpressed in transfected cells, GRXCR1 localizes along the length of actin-filament-rich structures at the dorsal-apical surface and induces structures with greater actin filament content and/or increased lengths in a subset of cells. Our results suggest that deafness in pirouette mutants is associated with loss of GRXCR1 function in modulating actin cytoskeletal architecture in the developing stereocilia of sensory hair cells.
机译:由于内耳中的神经上皮缺损,在小鼠竖趾(pi)位点的隐性突变会导致听力损失和前庭功能障碍。使用位置克隆策略,我们已经确定了在5个独立的等位基因轮播小鼠中,基因Grxcr1(富含谷胱甘肽半胱氨酸)中的突变。我们还提供了来自患有严重听力损失的人的GRXCR1的序列数据,表明竖趾旋转是研究非综合征性耳聋DFNB25机制的模型。 Grxcr1编码一个290个氨基酸的蛋白质,在其C末端包含一个与戊二醛毒素蛋白质相似的区域和一个富含半胱氨酸的区域。 Grxcr1在内耳的感觉上皮细胞中表达,其编码的蛋白质沿着立体纤毛的长度定位,在听觉和前庭毛细胞的顶端表面,富含肌动蛋白丝的机械感觉结构。毛细胞立体纤毛的精确结构对于正常听力至关重要。纯合子旋转小鼠中Grxcr1的功能丧失导致异常纤细和稍缩短的立体纤毛。当在转染的细胞中过表达时,GRXCR1沿着富含肌动蛋白丝的结构的长度定位在背顶表面,并在细胞亚群中诱导肌动蛋白丝含量更高和/或长度增加的结构。我们的结果表明,旋转感觉突变中的耳聋与感官毛细胞发育中的纤毛细胞中肌动蛋白细胞骨架结构的调节中GRXCR1功能的丧失有关。

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