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首页> 外文期刊>Human Molecular Genetics >Grhl2 deficiency impairs otic development and hearing ability in a zebrafish model of the progressive dominant hearing loss DFNA28.
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Grhl2 deficiency impairs otic development and hearing ability in a zebrafish model of the progressive dominant hearing loss DFNA28.

机译:Grhl2缺乏症会损害渐进性主导性听力损失DFNA28的斑马鱼模型中的耳部发育和听力。

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Congenital and progressive hearing impairment is a common distressing disease. The progressive dominant hearing loss DFNA28 in human is associated with a frameshift mutation of Grainyhead-like 2 (GRHL2) but its etiology and mechanism remain unknown. Here we report a zebrafish grhl2b(T086) mutant line in which grhl2b expression is interrupted by an insertion of a Tol2 transposon element. The mutants exhibit enlarged otocysts, smaller or eliminated otoliths, malformed semicircular canals, insensitiveness to sound stimulation and imbalanced swimming motion. Since grainyhead-like family members can regulate epithelial adhesion, we examined the expression of some genes encoding junction proteins in mutants. We show that the expression of claudin b (cldnb) and epcam is abolished or dramatically reduced and apical junctional complexes are abnormal in otic epithelial cells of mutant embryos. Co-injection of cldnb and epcam mRNA could largely rescue the mutant phenotype. Injection of human wild-type GRHL2 mRNA but not the mutant GRHL2 mRNA derived from DFNA28 patients into grhl2b(T086) mutant embryos could rescue the inner-ear defects. Furthermore, we demonstrate that Grhl2b directly binds to the enhancers and promotes the expression of cldnb and epcam. Thus, this work reveals an evolutionarily conserved function of Grhl2 in otic development and provides a fish model for further studying mechanisms of Grhl2-related hearing loss.
机译:先天性和进行性听力障碍是一种常见的令人困扰的疾病。人中进行性优势听觉失聪DFNA28与Grainyhead-like 2(GRHL2)的移码突变相关,但其病因和机制仍然未知。在这里我们报告斑马鱼grhl2b(T086)突变株系,其中grhl2b表达被Tol2转座子元件的插入所打断。突变体显示出较大的耳囊,较小或消失的耳石,畸形的半圆形管,对声音刺激不敏感以及游泳运动不平衡。由于粒头状家族成员可以调节上皮粘附,我们检查了突变体中一些编码连接蛋白的基因的表达。我们显示claudin b(cldnb)和epcam的表达被废除或显着降低,并且在突变胚的上皮细胞中顶端连接复合体是异常的。 cldnb和epcam mRNA的共同注射可以在很大程度上挽救突变表型。将人类野生型GRHL2 mRNA而不是DFNA28患者衍生的突变GRHL2 mRNA注射到grhl2b(T086)突变胚胎中可以挽救内耳缺陷。此外,我们证明,Grhl2b直接结合增强子,并促进cldnb和epcam的表达。因此,这项工作揭示了Grhl2在耳发育中的进化保守功能,并为进一步研究与Grhl2相关的听力损失的机制提供了鱼类模型。

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