首页> 外文期刊>The American Journal of Human Genetics >Impairment of SLC17A8 encoding vesicular glutamate transporter-3, VGLUT3, underlies nonsyndromic deafness DFNA25 and inner hair cell dysfunction in null mice.
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Impairment of SLC17A8 encoding vesicular glutamate transporter-3, VGLUT3, underlies nonsyndromic deafness DFNA25 and inner hair cell dysfunction in null mice.

机译:SLC17A8编码水泡谷氨酸转运蛋白3,VGLUT3的损伤是非综合征性聋DFNA25和内部毛细胞功能障碍的基础。

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摘要

Autosomal-dominant sensorineural hearing loss is genetically heterogeneous, with a phenotype closely resembling presbycusis, the most common sensory defect associated with aging in humans. We have identified SLC17A8, which encodes the vesicular glutamate transporter-3 (VGLUT3), as the gene responsible for DFNA25, an autosomal-dominant form of progressive, high-frequency nonsyndromic deafness. In two unrelated families, a heterozygous missense mutation, c.632C-->T (p.A211V), was found to segregate with DFNA25 deafness and was not present in 267 controls. Linkage-disequilibrium analysis suggested that the families have a distant common ancestor. The A211 residue is conserved in VGLUT3 across species and in all human VGLUT subtypes (VGLUT1-3), suggesting an important functional role. In the cochlea, VGLUT3 accumulates glutamate in the synaptic vesicles of the sensory inner hair cells (IHCs) before releasing it onto receptors of auditory-nerve terminals. Null mice with a targeted deletion of Slc17a8 exon 2lacked auditory-nerve responses to acoustic stimuli, although auditory brainstem responses could be elicited by electrical stimuli, and robust otoacoustic emissions were recorded. Ca(2+)-triggered synaptic-vesicle turnover was normal in IHCs of Slc17a8 null mice when probed by membrane capacitance measurements at 2 weeks of age. Later, the number of afferent synapses, spiral ganglion neurons, and lateral efferent endings below sensory IHCs declined. Ribbon synapses remaining by 3 months of age had a normal ultrastructural appearance. We conclude that deafness in Slc17a8-deficient mice is due to a specific defect of vesicular glutamate uptake and release and that VGLUT3 is essential for auditory coding at the IHC synapse.
机译:常染色体显性遗传的感觉神经性听力丧失在遗传上是异质的,其表型与老年性痴呆非常相似,老年性是人类衰老最常见的感觉缺陷。我们已经鉴定出编码水泡谷氨酸转运蛋白3(VGLUT3)的SLC17A8是负责DFNA25(一种进行性,高频非综合征性耳聋的常染色体显性形式)的基因。在两个不相关的家族中,发现杂合的错义突变c.632C-> T(p.A211V)与DFNA25聋隔离,并且在267个对照中不存在。连锁不平衡分析表明,这些家庭有一个遥远的共同祖先。 A211残基在整个物种的VGLUT3和所有人类VGLUT亚型(VGLUT1-3)中都是保守的,表明了重要的功能作用。在耳蜗中,VGLUT3在将其释放到听觉神经末梢受体之前,会在味觉内部毛细胞(IHC)的突触小泡中积累谷氨酸。靶向缺失Slc17a8外显子2的空小鼠缺乏听觉神经对听觉刺激的反应,尽管听觉脑干反应可通过电刺激引起,并记录了稳健的耳声发射。 Ca(2+)触发的突触小泡营业额在Slc17a8无效小鼠的IHC中正常,当通过2周龄的膜电容测量进行探测时。后来,感觉IHC以下的传入突触,螺旋神经节神经元和侧传末梢的数量下降。到3个月大时残留的丝带突触具有正常的超微结构外观。我们得出结论,Slc17a8缺陷型小鼠耳聋是由于水泡谷氨酸摄取和释放的特定缺陷所致,并且VGLUT3对于IHC突触的听觉编码至关重要。

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