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由 ABCA2 变异引起的共济失调和构音障碍:表型谱的扩展。

Ataxia and dysarthria due to an ABCA2 variant: Extension of the phenotypic spectrum.

机构信息

School of Biological Sciences, University of the Punjab, Lahore, FA, Pakistan.

出版信息

Parkinsonism Relat Disord. 2019 Jul;64:328-331. doi: 10.1016/j.parkreldis.2019.04.017. Epub 2019 Apr 25.

DOI:10.1016/j.parkreldis.2019.04.017
PMID:31047799
Abstract

INTRODUCTION

Ataxias are heterogeneous disorders that are caused by variants in a large number of genes. The study was conducted to identify the molecular basis of a movement disorder in a consanguineous Pakistani family.

METHODS

We performed clinical assessments and magnetic resonance imaging of the older of two siblings affected with a movement disorder. Molecular analyses included whole-exome sequencing in order to delineate the underlying pathology of the disorder. Segregation of variants with the phenotype was checked by Sanger sequencing.

RESULTS

Symptoms of the two affected subjects were consistent with cerebellar ataxia with dysarthria. Magnetic resonance imaging did not reveal brain abnormalities. The levels of low density lipid proteins were elevated in blood samples of both affected individuals. Whole-exome sequencing data analyses identified a frameshift variant, c.4993delG:p.(Val1665TyrfsTer36) in ABCA2 (NM_212533.2) which segregated with the disorder and was absent from all publicly available databases and ethnically matched controls. Although recessively inherited ABCA2 variants have been reported in two patients who had intellectual disability with global developmental delays, our study demonstrates the role of an ABCA2 variant in the pathogenesis of ataxia with dysarthria. The phenotype observed in our patients shows high concordance with that observed in Abca2 knockout mice.

CONCLUSION

Our research links an ABCA2 variant with a distinct form of ataxia with dysarthria in humans and demonstrates pleiotropic effects due to the gene mutation. The findings further delineate the importance of low density lipid metabolism and intracellular sterol trafficking in brain function.

摘要

简介

共济失调是由大量基因变异引起的异质性疾病。本研究旨在确定一个巴基斯坦近亲家族运动障碍的分子基础。

方法

我们对患有运动障碍的两个兄弟姐妹中的年长一个进行了临床评估和磁共振成像。分子分析包括全外显子组测序,以阐明该疾病的潜在病理。通过 Sanger 测序检查与表型分离的变体。

结果

两个受影响的个体的症状与共济失调伴构音障碍一致。磁共振成像未显示脑部异常。两个受影响个体的血液样本中低密度脂蛋白水平升高。全外显子组测序数据分析确定 ABCA2 中的移码变异 c.4993delG:p.(Val1665TyrfsTer36)(NM_212533.2),该变异与疾病共分离,并且不存在于所有公开可用的数据库和种族匹配的对照中。虽然已经在两名智力残疾伴全面发育迟缓的患者中报道了隐性遗传的 ABCA2 变异,但我们的研究表明 ABCA2 变异在共济失调伴构音障碍的发病机制中的作用。我们患者的表型与 Abca2 敲除小鼠观察到的表型高度一致。

结论

我们的研究将 ABCA2 变异与人类中一种独特形式的共济失调伴构音障碍联系起来,并证明了基因突变的多效性。研究结果进一步阐明了低密度脂蛋白代谢和细胞内固醇转运在大脑功能中的重要性。

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