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Analysis of BART7 MicroRNA from Epstein-Barr Virus-Infected Nasopharyngeal Carcinoma Cells by Capillary Electrophoresis

机译:毛细管电泳法分析EB病毒感染的鼻咽癌细胞中的BART7 MicroRNA

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摘要

MicroRNAs (miRNAs) are a class of approximately 22-nucleotide noncoding RNA molecules that negatively regulate their target genes in a sequence-specific manner. In the present study, a fluorescence-labeled antisense DNA oligonucleotide was directly hybridized with BART7 miRNA in SSC buffered-cetyltrimethylammonium bromide (CTAB), followed by capillary electrophoresis with laser-induced fluorescence. The CTAB-mediated hybridization allows the probe to anneal the target at 50.0 deg C, which is well below the computer-calculated melting temperature of 66.4 deg C. The free probe (22-nt) and probe/miRNA duplex (22-bp) can be separated well by 2percent poly(ethylene) oxide in the presence of electroosmotic flow with 7 M urea. The repeatability of the migration time of the DNA probe was 10.66 +- 0.34 min (n velence 10), the resolution was 1.12 +- 0.11 (n velence 10), and the separation efficiencies achieved were 1.71 and 1.74 million per meter. The peak area of the probe/miRNA duplex exhibited an excellent linearity (r~(2) velence 0.9973). Furthermore, no false positive result was detected even in the presence of a 2000-fold excess of single nucleotide-mismatched target. Compared to other methods, capillary electrophoresis not only exhibits excellent specificity but also shows negligible effects of intrinsic interferences such as human total RNA, primary miRNA or precursor miRNA.
机译:微小RNA(miRNA)是一类约22个核苷酸的非编码RNA分子,它们以序列特异性方式负调控其靶基因。在本研究中,将荧光标记的反义DNA寡核苷酸与BART7 miRNA在SSC缓冲的十六烷基三甲基溴化铵(CTAB)中直接杂交,然后用激光诱导的荧光进行毛细管电泳。 CTAB介导的杂交使探针能够在50.0摄氏度下退火靶标,该温度远低于计算机计算的66.4摄氏度的解链温度。游离探针(22-nt)和探针/ miRNA双链体(22-bp)在存在电渗流和7 M尿素的情况下,可用2%的聚环氧乙烷很好地将其分离。 DNA探针迁移时间的可重复性为10.66±0.34min(nvelence 10),分辨率为1.12±0.11(nvelence 10),并且实现的分离效率为每米1.71和174万。探针/ miRNA双链体的峰面积显示出极好的线性(r〜(2)速度0.9973)。此外,即使存在2000倍过量的单个核苷酸错配靶标,也未检测到假阳性结果。与其他方法相比,毛细管电泳不仅显示出出色的特异性,而且还显示出内在干扰物(如人类总RNA,初级miRNA或前体miRNA)的影响可忽略不计。

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