首页> 美国卫生研究院文献>American Journal of Human Genetics >Mutations in CDC14A Encoding a Protein Phosphatase Involved in Hair Cell Ciliogenesis Cause Autosomal-Recessive Severe to Profound Deafness
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Mutations in CDC14A Encoding a Protein Phosphatase Involved in Hair Cell Ciliogenesis Cause Autosomal-Recessive Severe to Profound Deafness

机译:CDC14A中的突变编码参与毛发细胞睫状发生的蛋白质磷酸酶导致常染色体隐性严重严重者为耳聋。

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摘要

By genetic linkage analysis in a large consanguineous Iranian family with eleven individuals affected by severe to profound congenital deafness, we were able to define a 2.8 Mb critical interval (at chromosome 1p21.2-1p21.1) for an autosomal-recessive nonsyndromic deafness locus (DFNB). Whole-exome sequencing allowed us to identify a CDC14A biallelic nonsense mutation, c.1126C>T (p.Arg376), which was present in the eight clinically affected individuals still alive. Subsequent screening of 115 unrelated individuals affected by severe or profound congenital deafness of unknown genetic cause led us to identify another CDC14A biallelic nonsense mutation, c.1015C>T (p.Arg339), in an individual originating from Mauritania. CDC14A encodes a protein tyrosine phosphatase. Immunofluorescence analysis of the protein distribution in the mouse inner ear showed a strong labeling of the hair cells’ kinocilia. By using a morpholino strategy to knockdown cdc14a in zebrafish larvae, we found that the length of the kinocilia was reduced in inner-ear hair cells. Therefore, deafness caused by loss-of-function mutations in CDC14A probably arises from a morphogenetic defect of the auditory sensory cells’ hair bundles, whose differentiation critically depends on the proper growth of their kinocilium.
机译:通过在一个大型的近亲伊朗家庭中患有严重至严重的先天性耳聋的11个个体的遗传连锁分析,我们能够为常染色体隐性非综合征性耳聋基因座定义一个2.8 Mb临界区间(在染色体1p21.2-1p21.1处) (DFNB)。全外显子组测序使我们能够鉴定出CDC14A双等位基因无义突变c.1126C> T(p.Arg376 ),该突变存在于8个仍然存活的受临床影响的个体中。随后筛选了115位无亲缘关系的个体,这些个体受未知基因原因的严重或严重的先天性耳聋的影响,导致我们在起源个体中鉴定出另一个CDC14A双等位基因无义突变c.1015C> T(p.Arg339 )来自毛里塔尼亚。 CDC14A编码蛋白质酪氨酸磷酸酶。对小鼠内耳中蛋白质分布的免疫荧光分析表明,毛细胞的运动蛋白标记很强。通过使用吗啉代策略来敲除斑马鱼幼虫中的cdc14a,我们发现内耳毛细胞中的kinocilia的长度减少了。因此,由CDC14A的功能丧失突变引起的耳聋可能是由听觉感觉细胞的发束的形态发生缺陷引起的,听觉感觉细胞的发束的分化主要取决于运动蛋白的适当生长。

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