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首页> 外文期刊>International Journal of Clinical and Experimental Pathology >RNAs specifically affect gene expression in a length, position and sequence dependent manner
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RNAs specifically affect gene expression in a length, position and sequence dependent manner

机译:RNA以长度,位置和序列依赖性方式特异性影响基因表达

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摘要

We aim to explore if RNA regulating gene expression is affected by length, sequence and position of RNA. HeLa cells were co-transfected with modulator plasmids (derived from pcDNA3.1 vector containing different length regulating sequences that produce RNAs) and reporter plasmids (derived from pEGFP-C1 vector); In addition, HeLa cells were transfected with plasmids that possess different sequences of downstream or adjacent genes of GFP reporter gene. We found that long inserting sequences of modulator plasmids induced stronger GFP gene activation than short inserting sequences. Changing of downstream sequences of GFP gene induced significant effects on GFP gene expression. Short sequences of adjacent genes of GFP activated GFP gene. Bioinformatics analysis of genes which is highly expressed in differentiating cells (thymocyte cells, germinal center B-cells) and quiescent cells (T cells, B cells) shows that differentiating cells produce longer RNA than quiescent cells. These findings demonstrate that the length, sequence and producing position of RNAs are important factors for RNA regulating gene expression.
机译:我们旨在探讨调节基因表达的RNA是否受RNA的长度,序列和位置的影响。将HeLa细胞与调节质粒(衍生自含有产生RNA的不同长度调节序列的pcDNA3.1载体)和报道质粒(衍生自pEGFP-C1载体)共转染;另外,用具有GFP报告基因的下游或相邻基因的不同序列的质粒转染HeLa细胞。我们发现调节剂质粒的长插入序列比短插入序列诱导更强的GFP基因激活。 GFP基因下游序列的改变诱导了对GFP基因表达的显着影响。 GFP激活的GFP基因的相邻基因的短序列。对分化细胞(胸腺细胞,生发中心B细胞)和静止细胞(T细胞,B细胞)中高表达基因的生物信息学分析表明,分化细胞比静止细胞产生更长的RNA。这些发现证明RNA的长度,序列和产生位置是调节RNA表达基因的重要因素。

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