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人神经祖细胞中自闭症相关长链非编码RNA MSNP1AS的转录基因沉默

Transcriptional Gene Silencing of the Autism-Associated Long Noncoding RNA MSNP1AS in Human Neural Progenitor Cells.

作者信息

DeWitt Jessica J, Hecht Patrick M, Grepo Nicole, Wilkinson Brent, Evgrafov Oleg V, Morris Kevin V, Knowles James A, Campbell Daniel B

机构信息

Zilkha Neurogenetic Institute, Keck School of Medicine, University of Southern California, Los Angeles, CA, USA.

出版信息

Dev Neurosci. 2016;38(5):375-383. doi: 10.1159/000453258. Epub 2016 Dec 29.

Abstract

The long noncoding RNA MSNP1AS (moesin pseudogene 1, antisense) is a functional element that was previously associated with autism spectrum disorder (ASD) with genome-wide significance. Expression of MSNP1AS was increased 12-fold in the cerebral cortex of individuals with ASD and 22-fold in individuals with a genome-wide significantly associated ASD genetic marker on chromosome 5p14.1. Overexpression of MSNP1AS in human neuronal cells caused decreased expression of moesin protein, which is involved in neuronal process stability. In this study, we hypothesize that MSNP1AS knockdown impacts global transcriptome levels. We transfected the human neural progenitor cell line SK- N-SH with constructs that caused a 50% suppression of MSNP1AS expression. After 24 h, cells were harvested for total RNA isolation. Strand-specific RNA sequencing analysis indicated altered expression of 1,352 genes, including altered expression of 318 genes following correction for multiple comparisons. Expression of the OAS2 gene was increased >150-fold, a result that was validated by quantitative PCR. Gene ontology analysis of the 318 genes with altered expression following correction for multiple comparisons indicated that upregulated genes were significantly enriched for genes involved in immune response, and downregulated genes were significantly enriched for genes involved in chromatin remodeling. These data indicate multiple transcriptional and translational functions of MSNP1AS that impact ASD-relevant biological processes. Chromatin remodeling and immune response are biological processes implicated by genes with rare mutations associated with ASD. Our data suggest that the functional elements implicated by association of common genetic variants impact the same biological processes, suggesting a possible shared common molecular pathway of ASD.

摘要

长链非编码RNA MSNP1AS(肌动蛋白结合蛋白假基因1,反义链)是一种功能元件,此前已被证明与具有全基因组意义的自闭症谱系障碍(ASD)相关。MSNP1AS在ASD个体的大脑皮层中表达增加了12倍,在5号染色体p14.1上具有全基因组显著相关的ASD遗传标记的个体中表达增加了22倍。在人类神经元细胞中过表达MSNP1AS会导致肌动蛋白结合蛋白的表达降低,而该蛋白与神经元突起的稳定性有关。在本研究中,我们假设敲低MSNP1AS会影响整体转录组水平。我们用能使MSNP1AS表达抑制50%的构建体转染人类神经祖细胞系SK-N-SH。24小时后,收集细胞以分离总RNA。链特异性RNA测序分析表明1352个基因的表达发生了改变,其中318个基因在进行多重比较校正后的表达也发生了改变。OAS2基因的表达增加了150倍以上,这一结果通过定量PCR得到了验证。对318个在多重比较校正后表达发生改变的基因进行基因本体分析表明,上调的基因显著富集于参与免疫反应的基因,而下调的基因显著富集于参与染色质重塑的基因。这些数据表明MSNP1AS具有多种转录和翻译功能,影响与ASD相关的生物学过程。染色质重塑和免疫反应是与ASD相关的罕见突变基因所涉及的生物学过程。我们的数据表明,常见遗传变异关联所涉及的功能元件影响相同的生物学过程,提示ASD可能存在共同的分子途径。

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