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C9ORF72 repeat expansion causes vulnerability of motor neurons to Ca2+-permeable AMPA receptor-mediated excitotoxicity

机译:C9ORF72重复扩增导致运动神经元易受Ca2 +渗透性AMPA受体介导的兴奋性毒性作用

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摘要

Mutations in C9ORF72 are the most common cause of familial amyotrophic lateral sclerosis (ALS). Here, through a combination of RNA-Seq and electrophysiological studies on induced pluripotent stem cell (iPSC)-derived motor neurons (MNs), we show that increased expression of GluA1 AMPA receptor (AMPAR) subunit occurs in MNs with C9ORF72 mutations that leads to increased Ca2+-permeable AMPAR expression and results in enhanced selective MN vulnerability to excitotoxicity. These deficits are not found in iPSC-derived cortical neurons and are abolished by CRISPR/Cas9-mediated correction of the C9ORF72 repeat expansion in MNs. We also demonstrate that MN-specific dysregulation of AMPAR expression is also present in C9ORF72 patient post-mortem material. We therefore present multiple lines of evidence for the specific upregulation of GluA1 subunits in human mutant C9ORF72 MNs that could lead to a potential pathogenic excitotoxic mechanism in ALS.
机译:C9ORF72中的突变是家族性肌萎缩性侧索硬化症(ALS)的最常见原因。在这里,通过对诱导的多能干细胞(iPSC)衍生的运动神经元(MNs)进行RNA-Seq和电生理研究的结合,我们显示GluA1 AMPA受体(AMPAR)亚基的表达增加,其C9ORF72突变导致MNs Ca 2 + -AMPAR表达增加,导致选择性MN对兴奋性毒性的脆弱性增强。这些缺陷在iPSC衍生的皮层神经元中未发现,并通过CRISPR / Cas9介导的MNs中C9ORF72重复扩增的纠正而消除。我们还证明了C9ORF72患者验尸材料中也存在AMPAR表达的MN特异性失调。因此,我们为人类突变体C9ORF72 MNs中GluA1亚基的特定上调提供了多条证据,这可能导致ALS中潜在的致病性兴奋毒性机制。

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