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首页> 外文期刊>Scientific reports. >Transgenic Tmc2 expression preserves inner ear hair cells and vestibular function in mice lacking Tmc1
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Transgenic Tmc2 expression preserves inner ear hair cells and vestibular function in mice lacking Tmc1

机译:转基因Tmc2表达可在缺乏Tmc1的小鼠中保留内耳毛细胞和前庭功能

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摘要

Recent work has demonstrated that transmembrane channel-like 1 protein (TMC1) is an essential component of the sensory transduction complex in hair cells of the inner ear. A closely related homolog, TMC2, is expressed transiently in the neonatal mouse cochlea and can enable sensory transduction in Tmc1-null mice during the first postnatal week. Both TMC1 and TMC2 are expressed at adult stages in mouse vestibular hair cells. The extent to which TMC1 and TMC2 can substitute for each other is unknown. Several biophysical differences between TMC1 and TMC2 suggest these proteins perform similar but not identical functions. To investigate these differences, and whether TMC2 can substitute for TMC1 in mature hair cells, we generated a knock-in mouse model allowing Cre-inducible expression of Tmc2. We assayed for changes in hair cell sensory transduction and auditory and vestibular function in Tmc2 knockin mice (Tm[Tmc2]) in the presence or absence of endogenous Tmc1, Tmc2 or both. Our results show that expression of Tm[TMC2] restores sensory transduction in vestibular hair cells and transiently in cochlear hair cells in the absence of TMC1. The cellular rescue leads to recovery of balance but not auditory function. We conclude that TMC1 provides some additional necessary function, not provided by TMC2.
机译:最近的工作表明跨膜通道样1蛋白(TMC1)是内耳毛细胞中感觉转导复合物的重要组成部分。密切相关的同系物TMC2在新生小鼠耳蜗中瞬时表达,并且可以在产后第一周内在Tmc1无小鼠中进行感觉传导。 TMC1和TMC2均在成年阶段在小鼠前庭毛细胞中表达。 TMC1和TMC2可以相互替代的程度尚不清楚。 TMC1和TMC2之间的几个生物物理差异表明,这些蛋白质执行相似但不相同的功能。为了研究这些差异以及成熟毛细胞中TMC2是否可以替代TMC1,我们生成了敲入小鼠模型,允许Cre诱导表达Tmc2。我们分析了存在或不存在内源性Tmc1,Tmc2或同时存在和不存在的情况下,Tmc2敲入小鼠(Tm [Tmc2])中毛细胞感觉传导以及听觉和前庭功能的变化。我们的结果表明,在不存在TMC1的情况下,Tm [TMC2]的表达可恢复前庭毛细胞的感觉转导,并在耳蜗毛细胞中短暂恢复。细胞拯救导致平衡的恢复,但听觉功能无法恢复。我们得出的结论是TMC1提供了一些其他必需的功能,而TMC2没有提供。

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