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小鼠 Kcna10 的 null 突变导致显著的前庭和轻度听力功能障碍。

A null mutation of mouse Kcna10 causes significant vestibular and mild hearing dysfunction.

机构信息

Section on Human Genetics, Laboratory of Molecular Genetics, National Institute on Deafness and Other Communication Disorders, National Institutes of Health, 5 Research Ct, 2A-19, Rockville, MD 20850, USA.

出版信息

Hear Res. 2013 Jun;300:1-9. doi: 10.1016/j.heares.2013.02.009. Epub 2013 Mar 22.

Abstract

KCNA10 is a voltage gated potassium channel that is expressed in the inner ear. The localization and function of KCNA10 was studied in a mutant mouse, B6-Kcna10(TM45), in which the single protein coding exon of Kcna10 was replaced with a beta-galactosidase reporter cassette. Under the regulatory control of the endogenous Kcna10 promoter and enhancers, beta-galactosidase was expressed in hair cells of the vestibular organs and the organ of Corti. KCNA10 expression develops in opposite tonotopic gradients in the inner and outer hair cells. Kcna10(TM45) homozygotes display only a mild elevation in pure tone hearing thresholds as measured by auditory brainstem response (ABR), while heterozygotes are normal. However, Kcna10(TM45) homozygotes have absent vestibular evoked potentials (VsEPs) or elevated VsEP thresholds with prolonged peak latencies, indicating significant vestibular dysfunction despite the lack of any overt imbalance behaviors. Our results suggest that Kcna10 is expressed primarily in hair cells of the inner ear, with little evidence of expression in other organs. The Kcna10(TM45) targeted allele may be a model of human nonsyndromic vestibulopathy.

摘要

KCNA10 是一种电压门控钾通道,在内耳中表达。在 B6-Kcna10(TM45) 突变小鼠中研究了 KCNA10 的定位和功能,其中 Kcna10 的单个蛋白编码外显子被β-半乳糖苷酶报告基因盒取代。在内源性 Kcna10 启动子和增强子的调控下,β-半乳糖苷酶在内耳前庭器官和 Corti 器官的毛细胞中表达。KCNA10 表达在内耳和外耳毛细胞中以相反的音调拓扑梯度发育。Kcna10(TM45) 纯合子在听性脑干反应 (ABR) 测量的纯音听阈中仅显示轻度升高,而杂合子正常。然而,Kcna10(TM45)纯合子的前庭诱发电位 (VsEPs) 缺失或 VsEP 阈值升高伴有峰潜伏期延长,表明尽管没有任何明显的不平衡行为,但存在明显的前庭功能障碍。我们的结果表明,Kcna10 主要在内耳毛细胞中表达,在其他器官中表达很少。Kcna10(TM45) 靶向等位基因可能是人类非综合征性前庭病的模型。

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