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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Molecular deformation and free-solution electrophoresis of DNA-uncharged polymer conjugates at high field strengths: theoretical predictions Part 2: Stretching.
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Molecular deformation and free-solution electrophoresis of DNA-uncharged polymer conjugates at high field strengths: theoretical predictions Part 2: Stretching.

机译:DNA不带电荷的聚合物共轭物在高场强下的分子变形和自由溶液电泳:理论预测第2部分:拉伸。

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摘要

DNA sequencing by electrophoresis can be dramatically sped up by overcoming the need for the sieving medium. Normally it is possible to separate DNA based on size in free solution; however, not end-labeled free-solution electrophoresis (ELFSE) uses a neutral drag-tag molecule to make it possible. In experiments to date, the drag-tag and DNA together form a random coil conformation; while with future generation drag-tags and high fields, deformation of this conformation may occur. In the first paper in this series we investigated the conditions under which the DNA and label become hydrodynamically distinct (or segregated), based on a theoretical approach developed for the electrophoresis of polyampholytes. In this paper we study further deformation wherein either the DNA and/or a polymeric label stretch. We show that deformation may dramatically improve the capabilities of ELFSE, especially when both the DNA and a polymeric drag-tag fully stretch; however, reaching these regimes will require extremely high field intensities, something that only microchip technologies may be able to achieve.
机译:通过克服对筛分介质的需求,可以大大加快通过电泳进行的DNA测序。通常,可以根据游离溶液中的大小分离DNA。但是,没有末端标记的自由溶液电泳(ELFSE)使用中性的拖曳标签分子来实现这一点。迄今为止的实验中,拖曳标签和DNA共同形成一个随机的线圈构象。而在下一代拖曳标签和高场的情况下,这种构象可能发生变形。在本系列的第一篇论文中,我们基于开发用于多两性电解质电泳的理论方法,研究了DNA和标记在流体动力学上不同(或分离)的条件。在本文中,我们研究了进一步的变形,其中DNA和/或聚合物标记会拉伸。我们表明,变形可以显着提高ELFSE的功能,尤其是当DNA和聚合物拖曳标签都充分拉伸时;但是,要达到这些要求,将需要极高的场强,只有微芯片技术才能实现。

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