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编码囊泡谷氨酸转运体-3(VGLUT3)的SLC17A8功能受损是导致非综合征性耳聋DFNA25以及纯合子小鼠内毛细胞功能障碍的根本原因。

Impairment of SLC17A8 encoding vesicular glutamate transporter-3, VGLUT3, underlies nonsyndromic deafness DFNA25 and inner hair cell dysfunction in null mice.

作者信息

Ruel Jérôme, Emery Sarah, Nouvian Régis, Bersot Tiphaine, Amilhon Bénédicte, Van Rybroek Jana M, Rebillard Guy, Lenoir Marc, Eybalin Michel, Delprat Benjamin, Sivakumaran Theru A, Giros Bruno, El Mestikawy Salah, Moser Tobias, Smith Richard J H, Lesperance Marci M, Puel Jean-Luc

机构信息

Inserm U 583, Institut des Neurosciences, Hôpital Saint Eloi, 34091 Montpellier, France; Université Montpellier 1, 34091 Montpellier, France.

出版信息

Am J Hum Genet. 2008 Aug;83(2):278-92. doi: 10.1016/j.ajhg.2008.07.008.

Abstract

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 2 lacked 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.

摘要

常染色体显性遗传性感觉神经性听力损失在遗传上具有异质性,其表型与老年性耳聋极为相似,老年性耳聋是人类衰老相关的最常见感觉缺陷。我们已确定编码囊泡谷氨酸转运体3(VGLUT3)的SLC17A8基因是导致DFNA25的基因,DFNA25是一种常染色体显性形式的进行性高频非综合征性耳聋。在两个无亲缘关系的家族中,发现一个杂合错义突变c.632C→T(p.A211V)与DFNA25耳聋共分离,且在267名对照者中未出现。连锁不平衡分析表明这两个家族有一个遥远的共同祖先。A211残基在跨物种的VGLUT3以及所有人类VGLUT亚型(VGLUT1 - 3)中都保守,提示其具有重要的功能作用。在耳蜗中,VGLUT3在感觉性内毛细胞(IHC)的突触小泡中积累谷氨酸,然后将其释放到听神经末梢的受体上。靶向缺失Slc17a8外显子2的基因敲除小鼠对声音刺激缺乏听神经反应,尽管电刺激可诱发听觉脑干反应,并且记录到了强烈的耳声发射。通过在2周龄时测量膜电容来检测,Slc17a8基因敲除小鼠的IHC中钙触发的突触小泡周转正常。随后,感觉性IHC下方的传入突触、螺旋神经节神经元和外侧传出末梢数量减少。到3月龄时剩余的带状突触具有正常的超微结构外观。我们得出结论,Slc17a8基因缺陷小鼠的耳聋是由于囊泡谷氨酸摄取和释放的特定缺陷所致并且VGLUT3对于IHC突触处的听觉编码至关重要。

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