诱导多能干细胞
类有机物
生物
祖细胞
异位症(医学)
神经科学
表型
神经干细胞
祖细胞
皮质激素生成
轴突引导
基因敲除
大脑皮层
细胞生物学
人脑
胚胎干细胞
轴突
基因
干细胞
遗传学
作者
Johannes Klaus,Sabina Kanton,Christina Kyrousi,Ane Cristina Ayo-Martin,Rossella Di Giaimo,Stephan Riesenberg,Adam C. O’Neill,J. Gray Camp,Chiara Tocco,Małgorzata Santel,Ejona Rusha,Micha Drukker,M. Schroeder,Magdalena Götz,Stephen P. Robertson,Barbara Treutlein,Silvia Cappello
出处
期刊:Nature Medicine
[Nature Portfolio]
日期:2019-03-11
卷期号:25 (4): 561-568
被引量:160
标识
DOI:10.1038/s41591-019-0371-0
摘要
Malformations of the human cortex represent a major cause of disability1. Mouse models with mutations in known causal genes only partially recapitulate the phenotypes and are therefore not unlimitedly suited for understanding the molecular and cellular mechanisms responsible for these conditions2. Here we study periventricular heterotopia (PH) by analyzing cerebral organoids derived from induced pluripotent stem cells (iPSCs) of patients with mutations in the cadherin receptor–ligand pair DCHS1 and FAT4 or from isogenic knockout (KO) lines1,3. Our results show that human cerebral organoids reproduce the cortical heterotopia associated with PH. Mutations in DCHS1 and FAT4 or knockdown of their expression causes changes in the morphology of neural progenitor cells and result in defective neuronal migration dynamics only in a subset of neurons. Single-cell RNA-sequencing (scRNA-seq) data reveal a subpopulation of mutant neurons with dysregulated genes involved in axon guidance, neuronal migration and patterning. We suggest that defective neural progenitor cell (NPC) morphology and an altered navigation system in a subset of neurons underlie this form of PH. iPSC-derived brain organoids from patients with neurodevelopmental disease reveal dysfunction in neural progenitors underlying impaired migration of developing neurons in periventricular heterotopia.
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