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BRSK2 中的有害变异与神经发育障碍有关。

Deleterious Variation in BRSK2 Associates with a Neurodevelopmental Disorder.

机构信息

HudsonAlpha Institute for Biotechnology, Huntsville, AL 35806, USA.

Department of Pediatrics and Human Development, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Am J Hum Genet. 2019 Apr 4;104(4):701-708. doi: 10.1016/j.ajhg.2019.02.002. Epub 2019 Mar 14.

Abstract

Developmental delay and intellectual disability (DD and ID) are heterogeneous phenotypes that arise in many rare monogenic disorders. Because of this rarity, developing cohorts with enough individuals to robustly identify disease-associated genes is challenging. Social-media platforms that facilitate data sharing among sequencing labs can help to address this challenge. Through one such tool, GeneMatcher, we identified nine DD- and/or ID-affected probands with a rare, heterozygous variant in the gene encoding the serine/threonine-protein kinase BRSK2. All probands have a speech delay, and most present with intellectual disability, motor delay, behavioral issues, and autism. Six of the nine variants are predicted to result in loss of function, and computational modeling predicts that the remaining three missense variants are damaging to BRSK2 structure and function. All nine variants are absent from large variant databases, and BRSK2 is, in general, relatively intolerant to protein-altering variation among humans. In all six probands for whom parents were available, the mutations were found to have arisen de novo. Five of these de novo variants were from cohorts with at least 400 sequenced probands; collectively, the cohorts span 3,429 probands, and the observed rate of de novo variation in these cohorts is significantly higher than the estimated background-mutation rate (p = 2.46 × 10). We also find that exome sequencing provides lower coverage and appears less sensitive to rare variation in BRSK2 than does genome sequencing; this fact most likely reduces BRSK2's visibility in many clinical and research sequencing efforts. Altogether, our results implicate damaging variation in BRSK2 as a source of neurodevelopmental disease.

摘要

发育迟缓伴智力障碍(DD 和 ID)是许多罕见的单基因疾病的异质性表型。由于这种罕见性,开发包含足够个体的队列以稳健地识别与疾病相关的基因具有挑战性。促进测序实验室之间数据共享的社交媒体平台可以帮助解决这一挑战。通过 GeneMatcher 等工具,我们鉴定了 9 名受 DD 和/或 ID 影响的先证者,他们携带编码丝氨酸/苏氨酸蛋白激酶 BRSK2 的基因中罕见的杂合变异。所有先证者都有言语延迟,大多数存在智力障碍、运动延迟、行为问题和自闭症。9 个变体中有 6 个被预测会导致功能丧失,计算模型预测其余 3 个错义变体对 BRSK2 结构和功能具有破坏性。所有 9 个变体都不存在于大型变异数据库中,并且 BRSK2 通常对人类中改变蛋白质的变异相对耐受。在所有可获得父母样本的 9 个先证者中,突变被发现是从头发生的。这些从头发生的变体中有 5 个来自至少有 400 名测序先证者的队列;这些队列总共包含 3429 名先证者,并且在这些队列中观察到的新生变异率明显高于估计的背景突变率(p=2.46×10)。我们还发现外显子组测序提供的覆盖度较低,并且对 BRSK2 中的稀有变异的敏感性低于基因组测序;这一事实很可能降低了 BRSK2 在许多临床和研究测序工作中的可见性。总而言之,我们的结果表明 BRSK2 中的有害变异是神经发育疾病的一个来源。

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