首页> 外文期刊>Journal of the Association for Research in Otolaryngology: JARO >Genome-Wide Association Analysis Identifies Dcc as an Essential Factor in the Innervation of the Peripheral Vestibular System in Inbred Mice
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Genome-Wide Association Analysis Identifies Dcc as an Essential Factor in the Innervation of the Peripheral Vestibular System in Inbred Mice

机译:全基因组关联分析确定Dcc是近交小鼠外围前庭系统神经支配的重要因素

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摘要

This study aimed to investigate the genetic causes of vestibular dysfunction. We used vestibular sensory-evoked potentials (VsEPs) to characterize the vestibular function of 35 inbred mouse strains selected from the Hybrid Mouse Diversity Panel and demonstrated strain-dependent phenotypic variation in vestibular function. Using these phenotypic data, we performed the first genome-wide association study controlling for population structure that has revealed two highly suggestive loci, one of which lies within a haplotype block containing five genes (Stard6, 4930503L19Rik, Poli, Mbd2, Dcc) on Chr. 18 (peak SNP rs29632020), one gene, deleted in colorectal carcinoma (Dcc) has a well-established role in nervous system development. An in-depth analysis of Dcc-deficient mice demonstrated elevation in mean VsEP threshold for Dcc (+/-) mice (-11.86 dB) compared to wild-type (-9.68 dB) littermates. Synaptic ribbon studies revealed Dcc (-/-) (P0) and Dcc (+/-) (6-week-old) mice showed lower density of the presynaptic marker (CtBP2) as compared to wild-type controls. Vestibular ganglion cell counts of Dcc (-/-) (P0) was lower than controls. Whole-mount preparations showed abnormal innervation of the utricle, saccule, and crista ampullaris at E14.5, E16.5, and E18.5. Postnatal studies were limited by the perinatal lethality in Dcc (-/-) mice. Expression analyses using in situ hybridization and immunohistochemistry showed Dcc expression in the mouse vestibular ganglion (E15.5), and utricle and crista ampullaris (6-week-old), respectively. In summary, we report the first GWAS for vestibular functional variation in inbred mice and provide evidence for the role of Dcc in the normal innervation of the peripheral vestibular system.
机译:这项研究旨在调查前庭功能障碍的遗传原因。我们使用前庭感觉诱发电位(VsEPs)表征了从“杂种小鼠多样性专家组”中选出的35个近交小鼠品系的前庭功能,并证明了前庭功能中依赖于应变的表型变异。利用这些表型数据,我们进行了第一项针对人群结构的全基因组关联研究,揭示了两个高度提示性的基因座,其中一个位于含有5个在Chr上的基因(Stard6、4930503L19Rik,Poli,Mbd2,Dcc)的单倍型基因座内。 。大肠癌(Dcc)中缺失的一个基因18(峰值SNP rs29632020)在神经系统发育中具有公认的作用。 Dcc缺陷小鼠的深入分析表明,与野生型(-9.68 dB)同窝仔相比,Dcc(+/-)小鼠(-11.86 dB)的平均VsEP阈值升高。突触带研究表明,与野生型对照相比,Dcc(-/-)(P0)和Dcc(+/-)(6周龄)小鼠的突触前标志物(CtBP2)密度较低。 Dcc(-/-)(P0)的前庭神经节细胞计数低于对照组。整装制剂在E14.5,E16.5和E18.5处显示出囊,囊和cr壶的神经支配异常。产后研究受到Dcc(-/-)小鼠围生期致死率的限制。使用原位杂交和免疫组织化学进行的表达分析表明,Dcc在小鼠前庭神经节(E15.5)以及脐带和壶腹(6周龄)中表达。总而言之,我们报告了近亲小鼠前庭功能变化的第一个GWAS,并提供了Dcc在外周前庭系统正常神经支配中的作用的证据。

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