神经上皮细胞
神经发生
皮质激素生成
生物
神经科学
脑积水
胚胎干细胞
神经干细胞
转录组
细胞生物学
遗传学
干细胞
基因
医学
基因表达
放射科
作者
Phan Q. Duy,Stefan Weise,Claudia Marini,Xiaojun Li,Dan Liang,Peter Dahl,Shaojie Ma,Ana Spajic,Weilai Dong,Jane Juusola,Emre Kiziltug,Adam J. Kundishora,Sunil Koundal,Maysam Zamani Pedram,Lucia Torres Fernández,Kristian Händler,Elena De Domenico,Matthias Becker,Thomas Ulas,Stefan Juranek
标识
DOI:10.1038/s41593-022-01043-3
摘要
Hydrocephalus, characterized by cerebral ventricular dilatation, is routinely attributed to primary defects in cerebrospinal fluid (CSF) homeostasis. This fosters CSF shunting as the leading reason for brain surgery in children despite considerable disease heterogeneity. In this study, by integrating human brain transcriptomics with whole-exome sequencing of 483 patients with congenital hydrocephalus (CH), we found convergence of CH risk genes in embryonic neuroepithelial stem cells. Of all CH risk genes, TRIM71/lin-41 harbors the most de novo mutations and is most specifically expressed in neuroepithelial cells. Mice harboring neuroepithelial cell-specific Trim71 deletion or CH-specific Trim71 mutation exhibit prenatal hydrocephalus. CH mutations disrupt TRIM71 binding to its RNA targets, causing premature neuroepithelial cell differentiation and reduced neurogenesis. Cortical hypoplasia leads to a hypercompliant cortex and secondary ventricular enlargement without primary defects in CSF circulation. These data highlight the importance of precisely regulated neuroepithelial cell fate for normal brain-CSF biomechanics and support a clinically relevant neuroprogenitor-based paradigm of CH.
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