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首页> 外文期刊>The journal of clinical investigation >Tricellulin deficiency affects tight junction architecture and cochlear hair cells
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Tricellulin deficiency affects tight junction architecture and cochlear hair cells

机译:甘油三酸酯缺乏会影响紧密连接结构和耳蜗毛细胞

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摘要

The two compositionally distinct extracellular cochlear fluids, endolymph and perilymph, are separated by tight junctions that outline the scala media and reticular lamina. Mutations in TRIC (also known as MARVELD2 ), which encodes a tricellular tight junction protein known as tricellulin, lead to nonsyndromic hearing loss (DFNB49). We generated a knockin mouse that carries a mutation orthologous to the TRIC coding mutation linked to DFNB49 hearing loss in humans. Tricellulin was absent from the tricellular junctions in the inner ear epithelia of the mutant animals, which developed rapidly progressing hearing loss accompanied by loss of mechanosensory cochlear hair cells, while the endocochlear potential and paracellular permeability of a biotin-based tracer in the stria vascularis were unaltered. Freeze-fracture electron microscopy revealed disruption of the strands of intramembrane particles connecting bicellular and tricellular junctions in the inner ear epithelia of tricellulin-deficient mice. These ultrastructural changes may selectively affect the paracellular permeability of ions or small molecules, resulting in a toxic microenvironment for cochlear hair cells. Consistent with this hypothesis, hair cell loss was rescued in tricellulin-deficient mice when generation of normal endolymph was inhibited by a concomitant deletion of the transcription factor, Pou3f4 . Finally, comprehensive phenotypic screening showed a broader pathological phenotype in the mutant mice, which highlights the non-redundant roles played by tricellulin.
机译:两种成分不同的细胞外耳蜗液,内淋巴和周淋巴液,由紧密连接分隔开,这些连接勾勒出ala骨中层和网状层。 TRIC(也称为MARVELD2)中的突变编码一种称为三纤维蛋白的三细胞紧密连接蛋白,导致非综合征性听力损失(DFNB49)。我们产生了一种敲除小鼠,其携带的突变与与人类DFNB49听力损失有关的TRIC编码突变有关。突变动物的内耳上皮细胞中的三细胞交界处不存在甘油三酯,后者迅速发展为听力丧失,伴随着机械感官耳蜗毛细胞的丧失,而基于生物素的示踪剂在血管纹中的耳蜗内电位和细胞旁通透性却很高。保持不变。冷冻断裂电子显微镜显示破坏了三纤维蛋白缺乏症小鼠的内耳上皮中连接双细胞和三细胞连接的膜内颗粒的链。这些超微结构的变化可能会选择性地影响离子或小​​分子的旁细胞通透性,从而导致耳蜗毛细胞有毒的微环境。与此假设相一致,当同时缺失转录因子Pou3f4抑制正常内淋巴的生成时,在缺乏三纤维素蛋白的小鼠中挽救了毛细胞的丢失。最后,全面的表型筛选在突变小鼠中表现出更广泛的病理表型,这突显了三纤蛋白发挥的非冗余作用。

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