首页> 美国卫生研究院文献>Nucleic Acids Research >Small extrachromosomal circular DNAs microDNA produce short regulatory RNAs that suppress gene expression independent of canonical promoters
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Small extrachromosomal circular DNAs microDNA produce short regulatory RNAs that suppress gene expression independent of canonical promoters

机译:小型染色体外环状DNAmicroDNA产生短调控RNA可抑制基因表达而不受规范启动子的影响

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摘要

Interest in extrachromosomal circular DNA (eccDNA) molecules has increased recently because of their widespread presence in normal cells across every species ranging from yeast to humans, their increased levels in cancer cells and their overlap with oncogenic and drug-resistant genes. However, the majority of eccDNA (microDNA) in mammalian tissues and cell lines are too small to carry protein coding genes. We have tested functional capabilities of microDNA by creating artificial microDNA molecules mimicking known microDNA sequences and have discovered that they express functional small regulatory RNA including microRNA and novel si-like RNA. MicroDNA are transcribed in vitro and in vivo independent of a canonical promoter sequence. MicroDNA that carry miRNA genes form transcripts that are processed by the endogenous RNA-interference pathway into mature miRNA molecules, which repress a luciferase reporter gene as well as endogenous mRNA targets of the miRNA. Further, microDNA that contain sequences of exons repress the endogenous gene from which the microDNA were derived through the formation of novel si-like RNA. We also show that endogenous microDNA associate with RNA polymerases subunits, POLR2H and POLR3F. Together, these results suggest that microDNA may modulate gene expression through the production of both known and novel regulatory small RNA.
机译:近年来,人们对染色体外环状DNA(eccDNA)分子的兴趣增加了,这是因为它们在正常细胞中广泛存在,从酵母到人类,从癌细胞到癌细胞的水平高,而且与致癌基因和耐药基因重叠。但是,哺乳动物组织和细胞系中的大多数eccDNA(microDNA)太小,无法携带蛋白质编码基因。我们已经通过创建模仿已知microDNA序列的人工microDNA分子来测试microDNA的功能能力,并发现它们表达功能性的小调控RNA,包括microRNA和新型si样RNA。 MicroDNA在体外和体内转录均独立于规范启动子序列。携带miRNA基因的MicroDNA形成转录物,通过内源RNA干扰途径加工成成熟的miRNA分子,从而抑制萤光素酶报道基因以及miRNA的内源性mRNA靶标。此外,包含外显子序列的microDNA通过形成新的si样RNA抑制microDNA的内源基因。我们还显示内源性microDNA与RNA聚合酶亚基POLR2H和POLR3F相关。总之,这些结果表明,microDNA可以通过产生已知和新型调节性小RNA来调节基因表达。

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