The utility of whole exome sequencing in diagnosing neurological disorders in adults from a highly consanguineous population.

IF 1.8 4区 医学 Q3 GENETICS & HEREDITY Journal of neurogenetics Pub Date : 2019-03-01 Epub Date: 2019-02-06 DOI:10.1080/01677063.2018.1555249
Weiyi Mu, Nicoline Schiess, Jennifer L Orthmann-Murphy, Ayman W El-Hattab
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引用次数: 11

Abstract

There is increasing evidence that whole exome sequencing (WES) has a high diagnostic yield and is cost-efficient for individuals with neurological phenotypes. However, there is limited data on the use of WES in non-Western populations, including populations with a high rate of consanguinity. Retrospective chart review was performed on 24 adults with undiagnosed neurological symptoms evaluated in genetics and neurology clinics in a tertiary care facility on the Arabian Peninsula, and had WES between 2014 and 2016. Definitive diagnoses were made in 13/24 (54%) of cases. Of these, 5/13 (38%) revealed novel pathogenic variants. Of the known 19/24 (79%) consanguineous cases, diagnostic rate was slightly higher, 11/19 (58%) as compared to 2/5 (40%) among non-consanguineous cases. Autosomal recessive disorders comprised 10/13 (77%) of molecular diagnoses, all found to be due to homozygous pathogenic variants among consanguineous cases. WES in this cohort of adults with neurological symptoms had a high diagnostic rate likely due to high consanguinity rates in this population, as evidenced by the high diagnostic rate of homozygous pathogenic variants.

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全外显子组测序在诊断高血缘人群成人神经系统疾病中的应用。
越来越多的证据表明,全外显子组测序(WES)具有很高的诊断率,并且对神经表型的个体具有成本效益。然而,关于非西方人群(包括血亲率高的人群)使用WES的数据有限。在2014年至2016年期间,在阿拉伯半岛的一家三级保健机构的遗传学和神经病学诊所评估了24名患有未确诊神经症状的成年人,并对其进行了回顾性图表审查。确诊率为13/24(54%)。其中,5/13(38%)发现了新的致病变异。在已知的19/24例(79%)近亲病例中,诊断率略高,为11/19(58%),而非近亲病例的诊断率为2/5(40%)。常染色体隐性遗传病占分子诊断的10/13(77%),所有发现是由于纯合致病变异在近亲病例。在这个有神经症状的成人队列中,WES的诊断率很高,这可能是由于该人群的高血缘率,纯合子致病变异的高诊断率证明了这一点。
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来源期刊
Journal of neurogenetics
Journal of neurogenetics 医学-神经科学
CiteScore
4.40
自引率
0.00%
发文量
13
审稿时长
>12 weeks
期刊介绍: The Journal is appropriate for papers on behavioral, biochemical, or cellular aspects of neural function, plasticity, aging or disease. In addition to analyses in the traditional genetic-model organisms, C. elegans, Drosophila, mouse and the zebrafish, the Journal encourages submission of neurogenetic investigations performed in organisms not easily amenable to experimental genetics. Such investigations might, for instance, describe behavioral differences deriving from genetic variation within a species, or report human disease studies that provide exceptional insights into biological mechanisms
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