Volchok (Vlk)内耳表型:enu诱导的CHARGE综合征小鼠模型

Danielle R. Lenz, A. Dror, G. Wekselman, H. Fuchs, M. D. de Angelis, K. Avraham
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引用次数: 4

摘要

目的:Volchok (Vlk)小鼠起源于C3HeB/FeJ背景下的大规模ENU项目的一部分。小鼠表现出主要通过循环活动反映的显性遗传模式,这促使我们寻找前庭表型下的致病突变。研究设计:分别使用连锁分析和随后的测序来缩小基因组区域并揭示突变。采用改进的SHIRPA方案,听觉脑干反应(ABR),免疫荧光,光学显微镜,扫描电镜(SEM),油漆填充和神经丝染色技术进行内耳表型的行为分析和检查。结果:在人类CHARGE综合征的Chd7基因中发现了一个无义突变,导致前庭和耳蜗细胞细胞核中Chd7表达减少,内耳结构异常。在突变小鼠中发现了轻微的听力损失。检测到的畸形包括外侧半规管截短、外侧嵴变小、耳蜗圆窗缩小或缺失、后嵴缺乏神经支配。结论:Vlk加入了一系列先前表征的携带Chd7突变的小鼠,将在enu诱导突变体和敲除小鼠模型中发现的异常联系起来。结合来自多个Chd7等位基因的信息,可以更全面地了解这种人类疾病的潜在机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The inner ear phenotype of Volchok (Vlk): An ENU-induced mouse model for CHARGE syndrome
Abstract Objective: The Volchok (Vlk) mouse originated as a part of a large-scale ENU program on a C3HeB/FeJ background. The mice present a dominant pattern of inheritance reflected mainly by circling activity, which led us to search for the causative mutation underlying the vestibular phenotype. Study design: Linkage analysis and subsequent sequencing were used to narrow down the genomic region and uncover the mutation, respectively. Behavioral analysis and examination of the inner ear phenotype was performed using the modified SHIRPA protocol, auditory brainstem response (ABR), immunofluorescence, light microscopy, scanning electron microscopy (SEM), paint-fill and neurofilament staining techniques. Results: A nonsense mutation was discovered in the Chd7 gene responsible for CHARGE syndrome in humans, which leads to a decrease in Chd7 expression in the nuclei of the vestibular and cochlear cells and structural abnormalities in the inner ear. A mild hearing loss was found in the mutant mice. The malformations detected include a truncated lateral semicircular canal and smaller lateral crista, a decrease in size or absence of the round window in the cochlea and lack of innervations to the posterior crista. Conclusion: Vlk joins a series of previously characterized mice bearing a Chd7 mutation, linking abnormalities found both in ENU-induced mutants and a knock-out mouse model. Combining the information from multiple Chd7 alleles provides a more comprehensive understanding of the mechanisms underlying this human disease.
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