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DDX17基因的单等位基因新生变异导致一种神经发育障碍。

Monoallelic de novo variants in DDX17 cause a neurodevelopmental disorder.

作者信息

Seaby Eleanor G, Godwin Annie, Meyer-Dilhet Géraldine, Clerc Valentine, Grand Xavier, Fletcher Tia, Monteiro Laloe, Kerkhofs Martijn, Carelli Valerio, Palombo Flavia, Seri Marco, Olivucci Giulia, Grippa Mina, Ciaccio Claudia, D'Arrigo Stefano, Iascone Maria, Bermudez Marion, Fischer Jan, Di Donato Nataliya, Goesswein Sophie, Leung Marco L, Koboldt Daniel C, Myers Cortlandt, Arnadottir Gudny Anna, Stefansson Kari, Sulem Patrick, Goldberg Ethan M, Bruel Ange-Line, Tran-Mau-Them Frederic, Willems Marjolaine, Bjornsson Hans Tomas, Hognason Hakon Bjorn, Thorolfsdottir Eirny Tholl, Agolini Emanuele, Novelli Antonio, Zampino Giuseppe, Onesimo Roberta, Lachlan Katherine, Baralle Diana, Rehm Heidi L, O'Donnell-Luria Anne, Courchet Julien, Guille Matt, Bourgeois Cyril F, Ennis Sarah

机构信息

Human Genetics and Genomic Medicine, Faculty of Medicine, University of Southampton, Southampton SO16 6YD, UK.

Translational Genomics Group, Broad Institute of MIT and Harvard, Cambridge, MA, 02142, USA.

出版信息

Brain. 2025 Apr 3;148(4):1155-1168. doi: 10.1093/brain/awae320.

Abstract

DDX17 is an RNA helicase shown to be involved in critical processes during the early phases of neuronal differentiation. Globally, we compiled a case series of 11 patients with neurodevelopmental phenotypes harbouring de novo monoallelic variants in DDX17. All 11 patients in our case series had a neurodevelopmental phenotype, whereby intellectual disability, delayed speech and language, and motor delay predominated. We performed in utero cortical electroporation in the brain of developing mice, assessing axon complexity and outgrowth of electroporated neurons, comparing wild-type and Ddx17 knockdown. We then undertook ex vivo cortical electroporation on neuronal progenitors to quantitatively assess axonal development at a single cell resolution. Mosaic ddx17 crispants and heterozygous knockouts in Xenopus tropicalis were generated for assessment of morphology, behavioural assays and neuronal outgrowth measurements. We further undertook transcriptomic analysis of neuroblastoma SH-SY5Y cells, to identify differentially expressed genes in DDX17-KD cells compared to controls. Knockdown of Ddx17 in electroporated mouse neurons in vivo showed delayed neuronal migration as well as decreased cortical axon complexity. Mouse primary cortical neurons revealed reduced axon outgrowth upon knockdown of Ddx17 in vitro. The axon outgrowth phenotype was replicated in crispant ddx17 tadpoles and in heterozygotes. Heterozygous tadpoles had clear neurodevelopmental defects and showed an impaired neurobehavioral phenotype. Transcriptomic analysis identified a statistically significant number of differentially expressed genes involved in neurodevelopmental processes in DDX17-KD cells compared to control cells. We have identified potential neurodevelopment disease-causing variants in a gene not previously associated with genetic disease, DDX17. We provide evidence for the role of the gene in neurodevelopment in both mammalian and non-mammalian species and in controlling the expression of key neurodevelopment genes.

摘要

DDX17是一种RNA解旋酶,已被证明参与神经元分化早期的关键过程。总体而言,我们汇编了一个病例系列,其中11例具有神经发育表型的患者携带DDX17的新生单等位基因变异。我们病例系列中的所有11例患者都有神经发育表型,其中智力残疾、言语和语言发育迟缓以及运动发育迟缓最为常见。我们在发育中小鼠的大脑中进行了子宫内皮质电穿孔,评估电穿孔神经元的轴突复杂性和生长情况,比较野生型和Ddx17基因敲低情况。然后,我们对神经元祖细胞进行了离体皮质电穿孔,以单细胞分辨率定量评估轴突发育。在热带爪蟾中生成了镶嵌型ddx17基因敲低体和杂合敲除体,用于形态学评估、行为分析和神经元生长测量。我们进一步对神经母细胞瘤SH-SY5Y细胞进行了转录组分析,以确定与对照组相比DDX17基因敲低细胞中差异表达的基因。体内电穿孔小鼠神经元中Ddx17基因敲低显示神经元迁移延迟以及皮质轴突复杂性降低。小鼠原代皮质神经元在体外Ddx17基因敲低后显示轴突生长减少。轴突生长表型在ddx17基因敲低体蝌蚪和杂合子中得到复制。杂合子蝌蚪有明显的神经发育缺陷,并表现出神经行为表型受损。转录组分析确定,与对照细胞相比,DDX17基因敲低细胞中有统计学意义数量的参与神经发育过程的差异表达基因。我们在一个以前与遗传疾病无关的基因DDX17中鉴定出了潜在的神经发育致病变异。我们提供了该基因在哺乳动物和非哺乳动物物种神经发育中以及在控制关键神经发育基因表达中的作用的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7394/11967813/1c66137a7dda/awae320f1.jpg

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