首页> 外文期刊>Biology Open >ILDR1 deficiency causes degeneration of cochlear outer hair cells and disrupts the structure of the organ of Corti: a mouse model for human DFNB42
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ILDR1 deficiency causes degeneration of cochlear outer hair cells and disrupts the structure of the organ of Corti: a mouse model for human DFNB42

机译:ILDR1缺乏症会导致耳蜗外毛细胞变性并破坏Corti器官的结构:人类DFNB42的小鼠模型

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Immunoglobulin-like domain containing receptor 1 ( ILDR1 ) is a poorly characterized gene that was first identified in lymphoma cells. Mutations in ILDR1 are responsible for DFNB42, but the pathogenesis of hearing loss caused by ILDR1 mutations remains to be elucidated. To explore the role of ILDR1 in hearing, we created Ildr1 knockout mice. In heterozygous mice, ILDR1 expression was found in outer hair cells (OHCs) and inner hair cells (IHCs) of the organ of Corti. ILDR1-deficient mice are profoundly deaf by postnatal day 21 (P21). No significant difference was observed in the supporting cells and IHCs of ILDR1-deficient mice, but progressive degeneration of OHCs occurred at P15 and disruption of the tunnel running through the organ of Corti was noticeable at P21. By P28, there were no OHCs visible in any of the turns of the organ of Corti, and the tunnel of the organ of Corti was entirely destroyed. ILDR1 deficiency affects expression of tricellulin in vivo , and this provides a possible explanation to hearing loss. To further elucidate the mechanism of deafness related to ILDR1 deficiency, we pursued a differential proteomic approach to comprehensively assess differential protein expression in the cochleae of Ildr1 +/? and Ildr1 ?/? mice at P21. Altogether, 708 proteins were up-regulated (fold change 1.5) and 114 proteins were down-regulated (fold change 0.5) in the Ildr1 ?/? mice compared with Ildr1 +/? mice. Gene ontology classification indicated that a number of differentially expressed proteins are involved in cell adhesion, protein and vesicle-mediated transport, cell death, membrane organization, and cellular homeostasis. A few of these proteins are closely related to hearing development. Taken together, our data suggest that ILDR1 is important for the survival of OHCs and provide novel insights into the pathogenesis of human deafness DFNB42 deafness.
机译:包含免疫球蛋白样结构域的受体1(ILDR1)是一个特征不明确的基因,最早在淋巴瘤细胞中被鉴定出来。 ILDR1中的突变是造成DFNB42的原因,但是由ILDR1突变引起的听力损失的发病机制仍有待阐明。为了探索ILDR1在听力中的作用,我们创建了Ildr1基因敲除小鼠。在杂合小鼠中,在Corti器官的外毛细胞(OHC)和内毛细胞(IHC)中发现了ILDR1表达。出生后第21天(P21),ILDR1缺陷小鼠严重失聪。在缺乏ILDR1的小鼠的支持细胞和IHC中未观察到显着差异,但在P15发生了OHC的进行性退化,在P21出现了贯穿Corti器官的隧道破坏。到P28为止,在Corti器官的任何转弯处都看不到OHC,并且Corti器官的隧道被完全摧毁。 ILDR1缺乏会影响体内三纤维蛋白的表达,这为听力损失提供了可能的解释。为了进一步阐明与ILDR1缺乏有关的耳聋的机制,我们采用了差异蛋白质组学方法来全面评估Ildr1 + /?耳蜗中差异蛋白的表达。和Ildr1?/? P21的小鼠。在Ildr1β/β中,总共有708种蛋白被上调(倍数变化> 1.5),而有114种蛋白被下调(倍数变化<0.5)。小鼠与Ildr1 + /?老鼠。基因本体分类表明,许多差异表达的蛋白质参与细胞粘附,蛋白质和囊泡介导的转运,细胞死亡,膜组织和细胞稳态。这些蛋白质中的一些与听力发育密切相关。两者合计,我们的数据表明ILDR1对于OHCs的生存很重要,并为人类聋DFNB42聋的发病机理提供了新颖的见解。

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