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首页> 外文期刊>Human Molecular Genetics >A novel mutation within the MIR96 gene causes non-syndromic inherited hearing loss in an Italian family by altering pre-miRNA processing
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A novel mutation within the MIR96 gene causes non-syndromic inherited hearing loss in an Italian family by altering pre-miRNA processing

机译:通过改变pre-miRNA的加工过程,MIR96基因内的一个新突变导致意大利家庭的非综合征性遗传性听力损失

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The miR-96, miR-182 and miR-183 microRNA (miRNA) family is essential for differentiation and function of the vertebrate inner ear. Recently, point mutations within the seed region of miR-96 were reported in two Spanish families with autosomal dominant non-syndromic sensorineural hearing loss (NSHL) and in a mouse model of NSHL. We screened 882 NSHL patients and 836 normal-hearing Italian controls and identified one putative novel mutation within the miR-96 gene in a family with autosomal dominant NSHL. Although located outside the mature miR-96 sequence, the detected variant replaces a highly conserved nucleotide within the companion miR-96*, and is predicted to reduce the stability of the pre-miRNA hairpin. To evaluate the effect of the detected mutation on miR-96/mir-96* biogenesis, we investigated the maturation of miR-96 by transient expression in mammalian cells, followed by real-time reverse-transcription polymerase chain reaction (PCR). We found that both miR-96 and miR-96* levels were significantly reduced in the mutant, whereas the precursor levels were unaffected. Moreover, miR-96 and miR-96* expression levels could be restored by a compensatory mutation that reconstitutes the secondary structure of the pre-miR-96 hairpin, demonstrating that the mutation hinders precursor processing, probably interfering with Dicer cleavage. Finally, even though the mature miR-96 sequence is not altered, we demonstrated that the identified mutation significantly impacts on miR-96 regulation of selected targets. In conclusion, we provide further evidence of the involvement of miR-96 mutations in human deafness and demonstrate that a quantitative defect of this miRNA may contribute to NSHL.
机译:miR-96,miR-182和miR-183 microRNA(miRNA)家族对于脊椎动物内耳的分化和功能至关重要。最近,在两个常染色体显性非综合征性感音神经性听力丧失(NSHL)的西班牙家族和一个NSHL小鼠模型中,报道了miR-96种子区域内的点突变。我们筛选了882名NSHL患者和836名正常听力的意大利对照,并在一个常染色体显性遗传NSHL家族中鉴定出miR-96基因中的一个推定的新突变。尽管位于成熟的miR-96序列之外,但检测到的变体替代了同伴miR-96 *中的高度保守的核苷酸,并预计会降低pre-miRNA发夹的稳定性。为了评估检测到的突变对miR-96 / mir-96 *生物发生的影响,我们通过在哺乳动物细胞中进行瞬时表达,然后进行实时逆转录聚合酶链反应(PCR),研究了miR-96的成熟过程。我们发现突变体中的miR-96和miR-96 *水平均显着降低,而前体水平未受影响。此外,可以通过补偿性突变来恢复miR-96和miR-96 *的表达水平,该突变可重构pre-miR-96发夹的二级结构,表明该突变会阻碍前体加工,可能会干扰Dicer的切割。最后,即使成熟的miR-96序列没有改变,我们也证明了已鉴定的突变会显着影响选定目标的miR-96调控。总之,我们提供了人类耳聋中miR-96突变参与的进一步证据,并证明了该miRNA的定量缺陷可能有助于NSHL。

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