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The autism-associated gene chromodomain helicase DNA-binding protein 8 (CHD8) regulates noncoding RNAs and autism-related genes

机译:自闭症相关基因染色体域解旋酶DNA结合蛋白8(CHD8)调节非编码RNA和自闭症相关基因

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摘要

Chromodomain helicase DNA-binding protein 8 (CHD8) was identified as a leading autism spectrum disorder (ASD) candidate gene by whole-exome sequencing and subsequent targeted-sequencing studies. De novo loss-of-function mutations were identified in 12 individuals with ASD and zero controls, accounting for a highly significant association. Small interfering RNA-mediated knockdown of CHD8 in human neural progenitor cells followed by RNA sequencing revealed that CHD8 insufficiency results in altered expression of 1715  genes, including both protein-coding and noncoding RNAs. Among the 10 most changed transcripts, 4 (40%) were noncoding RNAs. The transcriptional changes among protein-coding genes involved a highly interconnected network of genes that are enriched in neuronal development and in previously identified ASD candidate genes. These results suggest that CHD8 insufficiency may be a central hub in neuronal development and ASD risk.
机译:通过全外显子组测序和随后的靶向测序研究,染色体域解旋酶DNA结合蛋白8(CHD8)被鉴定为领先的自闭症谱系障碍(ASD)候选基因。从新发现的功能丧失突变是在12名患有ASD和零控制的个体中发现的,这与高度相关。 RNA介导的人类神经祖细胞中小分子干扰CHD8的小干扰,然后进行RNA测序显示,CHD8功能不足导致1715个基因表达的改变,包括蛋白质编码RNA和非编码RNA。在10个变化最大的转录本中,有4个(40%)是非编码RNA。蛋白质编码基因之间的转录变化涉及高度互连的基因网络,这些网络丰富了神经元发育和先前确定的ASD候选基因。这些结果表明,CHD8功能不足可能是神经元发育和ASD风险的中心枢纽。

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