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

机译:自闭症谱系紊乱中突触长非划痕RNA的基因组宽差异表达

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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 genes SHANK2 and BDNF , respectively, indicates that in addition to gene mutations, deregulation of lncRNAs on ASD-causing gene loci presents a new approach for exploring possible epigenetic mechanisms underlying ASD. Our study also opened a new avenue for exploring the use of lncRNA(s) as biomarker(s) for the early detection of ASD.
机译:在自闭症谱系障碍(ASD)的血液标本中鉴定了长非编码RNA(LNCRNA)的全基因组差异表达。共发现总共3929个LNCRNA在ASD外周白细胞中差异表达,其中包括上调的2407个,下调1522个。同时,在ASD白细胞中还鉴定了2591个信使RNA(MRNA),包括1789年上调和821个,在ASD白细胞中鉴定。这些LNCRNA的功能性途径分析显示突触囊泡循环,长期抑郁和长期增强的神经功能途径。在包括九个上调和下调的下调和19个突触mRNA的十三个突触LNCRNA被鉴定为在ASD中差异表达。我们对突触LNCRNA和MRNA的差异表达的鉴定表明,突触囊泡运输和循环对于在ASD中的突触前和突触后膜之间的突触体蛋白递送是重要的。 HOX基因的发现是霍尔基因的19LNCRNA,这是反义,双向和争论,可能导致我们探讨霍尔基因参与ASD的发育的作用。 Shank2-AS和BDNF的LNCRNA的发现,分别是基因Shank2和BDNF的自然反义,表明除了基因突变之外,ASD导致基因基因座上的LNCRNA对探测可能的表观遗传机制的预调底层ASD。我们的研究还开辟了一种新的途径,用于探索LNCRNA作为生物标志物的使用,以便早期检测ASD。

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