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PMID: 24056717 已发表 · ppublish 英语

Mutations in genes encoding the cadherin receptor-ligand pair DCHS1 and FAT4 disrupt cerebral cortical development.

Nature genetics ·第 45 卷 ·第 11 期 ·2014-01-08

Cappello Silvia, Gray Mary J, Badouel Caroline, Lange Simona, Einsiedler Melanie, Srour Myriam, Chitayat David, Hamdan Fadi F, Jenkins Zandra A, Morgan Tim, Preitner Nadia, Uster Tami, Thomas Jackie, Shannon Patrick, Morrison Victoria, Di Donato Nataliya, Van Maldergem Lionel, Neuhann Teresa, Newbury-Ecob Ruth, Swinkells Marielle, Terhal Paulien, Wilson Louise C, Zwijnenburg Petra J G, Sutherland-Smith Andrew J, Black Michael A, Markie David, Michaud Jacques L, Simpson Michael A, Mansour Sahar, McNeill Helen, Götz Magdalena, Robertson Stephen P

摘要

The regulated proliferation and differentiation of neural stem cells before the generation and migration of neurons in the cerebral cortex are central aspects of mammalian development. Periventricular neuronal heterotopia, a specific form of mislocalization of cortical neurons, can arise from neuronal progenitors that fail to negotiate aspects of these developmental processes. Here we show that mutations in genes encoding the receptor-ligand cadherin pair DCHS1 and FAT4 lead to a recessive syndrome in humans that includes periventricular neuronal heterotopia. Reducing the expression of Dchs1 or Fat4 within mouse embryonic neuroepithelium increased progenitor cell numbers and reduced their differentiation into neurons, resulting in the heterotopic accumulation of cells below the neuronal layers in the neocortex, reminiscent of the human phenotype. These effects were countered by concurrent knockdown of Yap, a transcriptional effector of the Hippo signaling pathway. These findings implicate Dchs1 and Fat4 upstream of Yap as key regulators of mammalian neurogenesis.

文献信息
期刊
Nature genetics
期刊简称
Nat Genet
发表日期
2014-01-08
收录日期
2013-10-29
更新日期
2014-02-28
语言
英语
国家/地区
United States
NLM ID
9216904
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