Ng Lily, Hernandez Arturo, He Wenxuan, Ren Tianying, Srinivas Maya, Ma Michelle, Galton Valerie A, St Germain Donald L, Forrest Douglas
National Institutes of Health, National Institute of Diabetes and Digestive and Kidney Diseases, Clinical Endocrinology Branch, Bethesda, Maryland 20892-1772, USA.
Endocrinology. 2009 Apr;150(4):1952-60. doi: 10.1210/en.2008-1419. Epub 2008 Dec 18.
Thyroid hormone is necessary for cochlear development and auditory function, but the factors that control these processes are poorly understood. Previous evidence indicated that in mice, the serum supply of thyroid hormone is augmented within the cochlea itself by type 2 deiodinase, which amplifies the level of T(3), the active form of thyroid hormone, before the onset of hearing. We now report that type 3 deiodinase, a thyroid hormone-inactivating enzyme encoded by Dio3, is expressed in the immature cochlea before type 2 deiodinase. Dio3-/- mice display auditory deficits and accelerated cochlear differentiation, contrasting with the retardation caused by deletion of type 2 deiodinase. The Dio3 mRNA expression pattern in the greater epithelial ridge, stria vascularis, and spiral ganglion partly overlaps with that of thyroid hormone receptor beta (TRbeta), the T(3) receptor that is primarily responsible for auditory development. The proposal that type 3 deiodinase prevents premature stimulation of TRbeta was supported by deleting TRbeta, which converted the Dio3-/- cochlear phenotype from one of accelerated to one of delayed differentiation. The results indicate a protective role for type 3 deiodinase in hearing. The auditory system illustrates the considerable extent to which tissues can autoregulate their developmental response to thyroid hormone through both type 2 and 3 deiodinases.
甲状腺激素对耳蜗发育和听觉功能至关重要,但控制这些过程的因素却知之甚少。先前的证据表明,在小鼠中,2型脱碘酶可增强耳蜗自身的甲状腺激素供应,该酶在听力开始前会放大甲状腺激素的活性形式T(3)的水平。我们现在报告,3型脱碘酶(由Dio3编码的一种甲状腺激素失活酶)在2型脱碘酶之前就在未成熟的耳蜗中表达。与2型脱碘酶缺失导致的发育迟缓相反,Dio3-/-小鼠表现出听觉缺陷和耳蜗分化加速。3型脱碘酶在大上皮嵴、血管纹和螺旋神经节中的mRNA表达模式与甲状腺激素受体β (TRβ) 部分重叠,TRβ是主要负责听觉发育的T(3)受体。通过删除TRβ支持了3型脱碘酶可防止TRβ过早激活的提议,这将Dio3-/-耳蜗表型从加速分化转变为延迟分化。结果表明3型脱碘酶在听力方面具有保护作用。听觉系统说明了组织通过2型和3型脱碘酶对甲状腺激素的发育反应进行自身调节的程度。