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Gipc3 mutations associated with audiogenic seizures and sensorineural hearing loss in mouse and human

机译:Gipc3突变与小鼠和人类的音源性癫痫发作和感觉神经性听力丧失有关

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Sensorineural hearing loss affects the quality of life and communication of millions of people, but the underlying molecular mechanisms remain elusive. Here, we identify mutations in Gipc3 underlying progressive sensorineural hearing loss (age-related hearing loss 5, ahl5) and audiogenic seizures (juvenile audiogenic monogenic seizure 1, jams1) in mice and autosomal recessive deafness DFNB15 and DFNB95 in humans. Gipc3 localizes to inner ear sensory hair cells and spiral ganglion. A missense mutation in the PDZ domain has an attenuating effect on mechanotransduction and the acquisition of mature inner hair cell potassium currents. Magnitude and temporal progression of wave I amplitude of afferent neurons correlate with susceptibility and resistance to audiogenic seizures. The Gipc3343A allele disrupts the structure of the stereocilia bundle and affects long-term function of auditory hair cells and spiral ganglion neurons. Our study suggests a pivotal role of Gipc3 in acoustic signal acquisition and propagation in cochlear hair cells.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:感音神经性听力损失影响着数百万人的生活质量和沟通,但潜在的分子机制仍然难以捉摸。在这里,我们确定了小鼠中渐进性感音神经性听力减退(年龄相关性听力减退5,ahl5)和音源性癫痫发作(青少年音源性单基因癫痫1,jams1)的Gipc3突变以及人类的常染色体隐性遗传性耳聋DFNB15和DFNB95。 Gipc3定位于内耳感觉毛细胞和螺旋神经节。 PDZ域中的一个错义突变对机械转导和成熟内毛细胞钾电流的获得具有衰减作用。输入神经元的I波幅值的大小和时间变化与易感性和对音源性癫痫发作的抵抗力有关。 Gipc3343A等位基因破坏了纤毛束的结构,并影响了听毛细胞和螺旋神经节神经元的长期功能。我们的研究表明,Gipc3在耳蜗毛细胞的声信号获取和传播中起着关键作用。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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