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Capillary electrophoretic separation-based approach to determine the labeling kinetics of oligodeoxynucleotides

机译:基于毛细管电泳分离的方法以确定寡脱氧核苷酸的标记动力学

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摘要

With the recent advances in electron microscopy (EM), computation, and nanofabrication, the original idea of reading DNA sequence directly from an image can now be tested. One approach is to develop heavy atom labels that can provide the contrast required for EM imaging. While evaluating tentative labels for the respective nucleobases in synthetic oligodeoxynucleotides (oligos), we developed a streamlined capillary electrophoresis (CE) protocol to assess the label stability, reactivity, and selectivity. We report our protocol using osmium tetroxide 2,2′-bipyridine (Osbipy) as a thymidine (T) specific label. The observed rates show that the labeling process is kinetically independent of both the oligo length, and the base composition. The conditions, i.e. temperature, optimal Osbipy concentration, and molar ratio of reagents, to promote 100% conversion of the starting oligo to labeled product were established. Hence the optimized conditions developed with the oligos could be leveraged to allow osmylation of effectively all Ts in single-stranded (ss) DNA, while achieving minimal mislabeling. In addition, the approach and methods employed here may be adapted to the evaluation of other prospective contrasting agents/labels to facilitate next-generation DNA sequencing by EM.
机译:随着电子显微镜(EM),计算和纳米加工的最新进展,现在可以测试直接从图像读取DNA序列的原始想法。一种方法是开发可以提供EM成像所需对比度的重原子标签。在评估合成寡聚脱氧核苷酸(oligos)中各个核碱基的暂定标记时,我们开发了一种简化的毛细管电泳(CE)方案以评估标记的稳定性,反应性和选择性。我们报告使用四氧化2,2,2'-联吡啶(Osbipy)作为胸腺嘧啶(T)特异性标记的方案。观察到的速率表明标记过程在动力学上与寡核苷酸长度和碱基组成无关。建立了促进起始寡核苷酸向标记产物100%转化的条件,即温度,最佳Osbipy浓度和试剂的摩尔比。因此,可以利用寡核苷酸开发的优化条件,以有效地对单链(ss)DNA中的所有T进行osmylation,同时实现最少的错误标记。另外,此处采用的方法和方法可适用于评估其他前瞻性造影剂/标记,以促进通过EM进行的下一代DNA测序。

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