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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >A long non-coding RNA, BC048612 and a microRNA, miR-203 coordinate the gene expression of neuronal growth regulator 1 (NEGR1) adhesion protein
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A long non-coding RNA, BC048612 and a microRNA, miR-203 coordinate the gene expression of neuronal growth regulator 1 (NEGR1) adhesion protein

机译:长的非编码RNA BC048612和microRNA miR-203协调神经元生长调节剂1(NEGR1)粘附蛋白的基因表达

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摘要

The regulatory roles for non-coding RNAs, the long non-coding RNAs and microRNAs, are emerging as crucial determinants of central nervous system development and function. Neuronal growth regulator 1 (NEGR1) is a cell adhesion molecule that has been shown to play an important role in neurite outgrowth during neuronal development. Precise expression of the Negr1 gene is crucial for proper brain development and is dysregulated during brain injury. Hence, we attempted to elucidate the non-coding RNAs that control Negr1 gene expression. A long non-coding RNA, BC048612, transcribed from the bidirectional GC-rich Negr1 gene promoter was found to influence Negr1 mRNA expression. In vitro knockdown of the long non-coding RNA resulted in significant down-regulation of Negr1 mRNA expression, NEGR1 protein levels and neurite length whereas over expression enhanced Negr1 mRNA expression, NEGR1 protein levels and increased neurite length. Meanwhile, another non-coding RNA, microRNA-203, was found to target the 3' untranslated region of the Negri mRNA. Inhibition of microRNA-203 led to increased expression of Negr1 mRNA, elevated NEGR1 protein levels and increased neurite length. Conversely, microRNA-203 over-expression decreased the level of Negr1 mRNA, NEGR1 protein and neurite length. Neither microRNA-203 nor the long non-coding RNA, BC048612 could influence each other's expression. Hence, the long non-coding RNA, BC048612, and microRNA-203 were determined to be positive and negative regulators of Negr1 gene expression respectively. These processes have a direct effect on NEGR1 protein levels and neurite length, thus highlighting the importance of the regulatory non-coding RNAs in modulating Negri gene expression for precise neuronal development. (C) 2015 Elsevier B.V. All rights reserved.
机译:非编码RNA,长的非编码RNA和microRNA的调节作用正逐渐成为中枢神经系统发育和功能的关键决定因素。神经元生长调节剂1(NEGR1)是一种细胞粘附分子,已显示在神经元发育过程中神经突向外生长中起重要作用。 Negr1基因的精确表达对于大脑的正常发育至关重要,并且在脑损伤过程中表达失调。因此,我们试图阐明控制Negr1基因表达的非编码RNA。发现从富含双向GC的Negr1基因启动子转录的长非编码RNA BC048612影响Negr1 mRNA表达。长的非编码RNA的体外敲低导致Negr1 mRNA表达,NEGR1蛋白水平和神经突长度的显着下调,而过表达则增强了Negr1 mRNA表达,NEGR1蛋白水平和神经突长度的增加。同时,发现另一种非编码RNA microRNA-203靶向Negri mRNA的3'非翻译区。 microRNA-203的抑制导致Negr1 mRNA表达增加,NEGR1蛋白水平升高和神经突长度增加。相反,microRNA-203的过表达降低了Negr1 mRNA,NEGR1蛋白和神经突长度的水平。 microRNA-203和长的非编码RNA BC048612都不会影响彼此的表达。因此,长的非编码RNA,BC048612和microRNA-203被确定分别是Negr1基因表达的正向和负向调节子。这些过程对NEGR1蛋白水平和神经突长度有直接影响,因此突显了调节非编码RNA在调节Negri基因表达以促进精确神经元发育中的重要性。 (C)2015 Elsevier B.V.保留所有权利。

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