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Genome-wide differential expression of synaptic long noncoding RNAs in autismspectrum disorder

机译:自闭症中突触长非编码RNA的全基因组差异表达。频谱障碍

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摘要

A genome-wide differential expression of long noncoding RNAs (lncRNAs) was identified in blood specimens of autism spectrum disorder (ASD). A total of 3929 lncRNAs were found to be differentially expressed in ASD peripheral leukocytes, including 2407 that were upregulated and 1522 that were downregulated. Simultaneously, 2591 messenger RNAs (mRNAs), including 1789 upregulated and 821 downregulated, were also identified in ASD leukocytes. Functional pathway analysis of these lncRNAs revealed neurological pathways of the synaptic vesicle cycling, long-term depression and long-term potentiation to be primarily involved. Thirteen synaptic lncRNAs, including nine upregulated and four downregulated, and 19 synaptic mRNAs, including 12 upregulated and seven downregulated, were identified as being differentially expressed in ASD. Our identification of differential expression of synaptic lncRNAs and mRNAs suggested that synaptic vesicle transportation and cycling are important for the delivery of synaptosomal protein(s) between presynaptic and postsynaptic membranes in ASD. Finding of 19 lncRNAs, which are the antisense, bi-directional and intergenic, of HOX genes may lead us to investigate the role of HOX genes involved in the development of ASD. Discovery of the lncRNAs of SHANK2-AS and BDNF-AS, the natural antisense of genesSHANK2 and BDNF, respectively, indicates that in addition togene mutations, deregulation of lncRNAs on ASD-causing gene loci presents a newapproach for exploring possible epigenetic mechanisms underlying ASD. Our study alsoopened a new avenue for exploring the use of lncRNA(s) as biomarker(s) for the earlydetection of ASD.
机译:在自闭症谱系障碍(ASD)的血液样本中鉴定出长非编码RNA(lncRNA)的全基因组差异表达。发现总共3929个lncRNA在ASD外周血白细胞中差异表达,包括2407个上调和1522个下调。同时,在ASD白细胞中还鉴定到2591个信使RNA(mRNA),包括1789个上调和821个下调。这些lncRNA的功能途径分析表明,主要涉及突触小泡循环,长期抑制和长期增强的神经系统途径。鉴定出13种突触lncRNA,包括9种上调和4种下调,以及19种突触mRNA,包括12种上调和7种下调,在ASD中差异表达。我们对突触lncRNA和mRNA表达差异的鉴定表明,突触小泡运输和循环对于ASD中突触前膜和突触后膜之间的突触蛋白的传递非常重要。 HOX基因的反义,双向和基因间的19个lncRNA的发现可能使我们研究HOX基因在ASD的发展中的作用。天然反义基因SHANK2-AS和BDNF-AS的lncRNA的发现SHANK2和BDNF分别表示基因突变,在导致ASD的基因位点上抑制lncRNA的表达,提出了一种新的探索潜在的ASD潜在表观遗传机制的方法。我们的研究也为探索使用lncRNA作为早期生物标志物开辟了一条新途径检测ASD。

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