首页> 外文期刊>Human Molecular Genetics >A study of whirlin isoforms in the mouse vestibular system suggests potential vestibular dysfunction in DFNB31-deficient patients.
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A study of whirlin isoforms in the mouse vestibular system suggests potential vestibular dysfunction in DFNB31-deficient patients.

机译:小鼠前庭系统中的whirlin同工型研究表明,DFNB31缺陷患者可能存在前庭功能障碍。

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The DFNB31 gene plays an indispensable role in the cochlea and retina. Mutations in this gene disrupt its various isoforms and lead to non-syndromic deafness, blindness and deaf-blindness. However, the known expression of Dfnb31, the mouse ortholog of DFNB31, in vestibular organs and the potential vestibular-deficient phenotype observed in one Dfnb31 mutant mouse (Dfnb31(wi/wi)) suggest that DFNB31 may also be important for vestibular function. In this study, we find that full-length (FL-) and C-terminal (C-) whirlin isoforms are expressed in the vestibular organs, where their stereociliary localizations are similar to those of developing cochlear inner hair cells. No whirlin is detected in Dfnb31(wi/wi) vestibular organs, while only C-whirlin is expressed in Dfnb31(neoeo) vestibular organs. Both FL- and C-whirlin isoforms are required for normal vestibular stereociliary growth, although they may play slightly different roles in the central and peripheral zones of the crista ampullaris. Vestibular sensory-evoked potentials demonstrate severe to profound vestibular deficits in Dfnb31(neoeo) and Dfnb31(wi/wi) mice. Swimming and rotarod tests demonstrate that the two Dfnb31 mutants have balance problems, with Dfnb31(wi/wi) mice being more affected than Dfnb31(neoeo) mice. Because Dfnb31(wi/wi) and Dfnb31(neoeo) mice faithfully recapitulate hearing and vision symptoms in patients, our findings of vestibular dysfunction in these Dfnb31 mutants raise the question of whether DFNB31-deficient patients may acquire vestibular as well as hearing and vision loss.
机译:DFNB31基因在耳蜗和视网膜中起着不可或缺的作用。该基因的突变会破坏其各种同工型,并导致非综合征性耳聋,失明和失聪。但是,Dfnb31(DFNB31的小鼠直系同源物)在前庭器官中的已知表达以及在一只Dfnb31突变小鼠(Dfnb31(wi / wi))中观察到的潜在前庭缺陷表型表明DFNB31对前庭功能也可能很重要。在这项研究中,我们发现全长(FL-)和C末端(C-)旋转蛋白同工型在前庭器官中表达,它们的立体纤毛定位类似于正在发育的耳蜗内毛细胞。在Dfnb31(wi / wi)前庭器官中未检测到whirlin,而在Dfnb31(neo / neo)前庭器官中仅表达C-whirlin。正常前庭立体纤毛生长需要FL和C-whirlin同工型,尽管它们在壶腹壶腹的中央和周边区域可能起着稍有不同的作用。前庭感觉诱发电位表明严重和严重前庭缺陷在Dfnb31(neo / neo)和Dfnb31(wi / wi)小鼠中。游泳和旋转试验证明这两个Dfnb31突变体存在平衡问题,其中Dfnb31(wi / wi)小鼠比Dfnb31(neo / neo)小鼠受影响更大。由于Dfnb31(wi / wi)和Dfnb31(neo / neo)小鼠忠实地概括了患者的听觉和视觉症状,因此我们在这些Dfnb31突变体中发现前庭功能障碍的问题提出了以下问题:缺乏DFNB31的患者是否会获得前庭以及听力和视力下降。

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