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Deafness and loss of cochlear hair cells in the absence of thyroid hormone transporters Slc16a2 (Mct8) and Slc16a10 (Mct10)

机译:甲状腺激素转运蛋白SLC16A2(MCT8)和SLC16A10(MCT10)没有甲状腺激素转运蛋白耳毛细胞的耳聋和耳蜗毛细胞的丧失

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Transmembrane proteins that mediate the cellular uptake or efflux of thyroid hormone potentially provide a key level of control over neurodevelopment. In humans, defects in one such protein, solute carrier SLC16A2 (MCT8) are associated with psychomotor retardation. Other proteins that transport the active form of thyroid hormone triiodothyronine (T3) or its precursor thyroxine (T4) have been identified in vitro but the wider significance of such transporters in vivo is unclear. The development of the auditory system requires thyroid hormone and the cochlea is a primary target tissue. We have proposed that the compartmental anatomy of the cochlea would necessitate transport mechanisms to convey blood-borne hormone to target tissues. We report hearing loss in mice with mutations in Slc16a2 and a related gene Slc16a10 (Mct10, Tat1). Deficiency of both transporters results in retarded development of the sensory epithelium similar to impairment caused by hypothyroidism, compounded with a progressive degeneration of cochlear hair cells and loss of endocochlear potential. Administration of T3 largely restores the development of the sensory epithelium and limited auditory function, indicating the T3-sensitivity of defects in the sensory epithelium. The results indicate a necessity for thyroid hormone transporters in cochlear development and function.
机译:介导甲状腺激素的细胞摄取或排出的跨膜蛋白可能提供对神经发育的关键控制水平。在人类中,一种这样的蛋白质中的缺陷,溶质载体SLC16A2(MCT8)与精神术延迟相关。已经在体外鉴定了转运活性形式的甲状腺激素三碘噻酮(T3)或其前体甲状腺素(T4)的其他蛋白质,但这种转运蛋白在体内的更广泛意义尚不清楚。听觉系统的发展需要甲状腺激素,耳蜗是主要靶组织。我们提出了耳蜗的分区解剖学将需要运输机制来将血液传播的激素传达给靶组织。我们报告小鼠的听力丧失,在SLC16A2中的突变和相关基因SLC16A10(MCT10,TAT1)。两种转运仪的缺乏导致类似于由甲状腺功能亢进引起的损伤的感觉上皮的延迟发展,与耳蜗毛细胞的渐变性和endoCoChear潜力的丧失复合。 T3的施用在很大程度上恢复了感官上皮和有限的听觉功能的发展,表明感官上皮中缺陷的T3敏感性。结果表明植物耳蜗发育和功能中的甲状腺激素转运蛋白的必要性。

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