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生存运动神经元复合物基因 GEMIN5 的致病性变异导致小脑萎缩。

Pathogenic variants in the survival of motor neurons complex gene GEMIN5 cause cerebellar atrophy.

机构信息

Department of Human Genetics, Yokohama City University Graduate School of Medicine, Yokohama, Japan.

Department of Molecular and Developmental Biology, Faculty of Medicine, University of Tsukuba, Tsukuba, Japan.

出版信息

Clin Genet. 2021 Dec;100(6):722-730. doi: 10.1111/cge.14066. Epub 2021 Oct 7.

Abstract

Cerebellar ataxia is a genetically heterogeneous disorder. GEMIN5 encoding an RNA-binding protein of the survival of motor neuron complex, is essential for small nuclear ribonucleoprotein biogenesis, and it was recently reported that biallelic loss-of-function variants cause neurodevelopmental delay, hypotonia, and cerebellar ataxia. Here, whole-exome analysis revealed compound heterozygous GEMIN5 variants in two individuals from our cohort of 162 patients with cerebellar atrophy/hypoplasia. Three novel truncating variants and one previously reported missense variant were identified: c.2196dupA, p.(Arg733Thrfs6) and c.1831G > A, p.(Val611Met) in individual 1, and c.3913delG, p.(Ala1305Leufs14) and c.4496dupA, p.(Tyr1499*) in individual 2. Western blotting analysis using lymphoblastoid cell lines derived from both affected individuals showed significantly reduced levels of GEMIN5 protein. Zebrafish model for null variants p.(Arg733Thrfs6) and p.(Ala1305Leufs14) exhibited complete lethality at 2 weeks and recapitulated a distinct dysplastic phenotype. The phenotypes of affected individuals and the zebrafish mutant models strongly suggest that biallelic loss-of-function variants in GEMIN5 cause cerebellar atrophy/hypoplasia.

摘要

小脑共济失调是一种遗传异质性疾病。GEMIN5 编码运动神经元存活复合物的 RNA 结合蛋白,对于小核核糖核蛋白的生物发生至关重要,最近有报道称双等位基因失活变异导致神经发育迟缓、低张力和小脑共济失调。在这里,全外显子组分析揭示了我们的 162 例小脑萎缩/发育不良患者队列中两名个体的复合杂合 GEMIN5 变体。在个体 1 中鉴定出三个新的截断变体和一个先前报道的错义变体:c.2196dupA、p.(Arg733Thrfs6)和 c.1831G>A、p.(Val611Met),在个体 2 中鉴定出 c.3913delG、p.(Ala1305Leufs14)和 c.4496dupA、p.(Tyr1499*)。使用源自两个受影响个体的淋巴母细胞系进行的 Western blot 分析显示 GEMIN5 蛋白水平显著降低。对于 null 变体 p.(Arg733Thrfs6)和 p.(Ala1305Leufs14)的斑马鱼模型在 2 周时表现出完全致死性,并再现了独特的发育不良表型。受影响个体的表型和斑马鱼突变模型强烈表明 GEMIN5 中的双等位基因失活变异导致小脑萎缩/发育不良。

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