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首页> 外文期刊>Scientific reports. >The HSA21 gene EURL/C21ORF91 controls neurogenesis within the cerebral cortex and is implicated in the pathogenesis of Down Syndrome
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The HSA21 gene EURL/C21ORF91 controls neurogenesis within the cerebral cortex and is implicated in the pathogenesis of Down Syndrome

机译:HSA21基因EURL / C21ORF91控制大脑皮层内的神经发生,并与唐氏综合症的发病机制有关

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摘要

Copy number variations to chromosome 21 (HSA21) cause intellectual disability and Down Syndrome, but our understanding of the HSA21 genetic factors which contribute to fetal brain development remains incomplete. Here, we focussed on the neurodevelopmental functions for EURL (also known as C21ORF91, Refseq Gene ID:54149), a protein-coding gene at the centromeric boundary of the Down Syndrome Critical Region (DSCR) of HSA21. We report that EURL is expressed during human and mouse cerebral cortex development, and we report that alterations to EURL mRNA levels within the human brain underlie Down Syndrome. Our gene perturbation studies in mice demonstrate that disruptions to Eurl impair progenitor proliferation and neuronal differentiation. Also, we find that disruptions to Eurl impair the long-term positioning and dendritic spine densities of cortical projection neurons. We provide evidence that EURL interacts with the coiled-coil domain-containing protein CCDC85B so as to modulate β-catenin levels in cells. Further, we utilised a fluorescent reporter (8xTOPFLASHd2EGFP) to demonstrate that disruptions to Eurl alter β-catenin signalling in vitro as well as in vivo. Together, these studies highlight EURL as an important new player in neuronal development that is likely to impact on the neuropathogenesis of HSA21-related disorders including Down Syndrome.
机译:第21号染色体(HSA21)的拷贝数变异会导致智力障碍和唐氏综合症,但我们对HSA21遗传因素的理解仍不完整,HSA21遗传因素有助于胎儿大脑发育。在这里,我们着眼于EURL(也称为C21ORF91,Refseq基因ID:54149)的神经发育功能,EURL是HSA21的唐氏综合症关键区域(DSCR)着丝粒边界处的蛋白质编码基因。我们报告在人类和小鼠的大脑皮质发育过程中表达了EURL,并且我们报告了人脑内EURL mRNA水平的改变是唐氏综合症的基础。我们在小鼠中进行的基因扰动研究表明,对Eurl的破坏会损害祖细胞的增殖和神经元分化。此外,我们发现对Eurl的破坏会损害皮质投射神经元的长期定位和树突棘密度。我们提供的证据表明EURL与包含卷曲螺旋域的蛋白质CCDC85B相互作用,从而调节细胞中的β-catenin水平。此外,我们利用荧光报告基因(8xTOPFLASHd2EGFP)证明了对Eurl的破坏会在体内和体外改变β-catenin信号传导。总之,这些研究突显了EURL是神经元发育中的重要新参与者,它可能影响HSA21相关疾病(包括唐氏综合症)的神经发病机制。

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