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 1: hydrodynamic segregation.
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Molecular deformation and free-solution electrophoresis of DNA-uncharged polymer conjugates at high field strengths: theoretical predictions. Part 1: hydrodynamic segregation.

机译:DNA不带电荷的聚合物共轭物在高电场强度下的分子变形和自由溶液电泳:理论预测。第1部分:流体动力隔离。

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摘要

Recent advancements in DNA sequencing by end-labeled free-solution electrophoresis (ELFSE) show the promise of this novel technique which overcomes the need for a gel by using a label (or drag-tag) to render the free solution mobility of the DNA size-dependent. It is the attachment of an uncharged drag-tag molecule of a set size to various lengths of DNA in the sample that selectively slows down smaller DNA chains which have less force to pull the drag-tag than larger DNA. So far, only globally random coil conformations have been associated with ELFSE, i.e., the DNA and the label together form a single, undeformed hydrodynamic unit. This paper investigates the conditions under which the DNA and label will segregate into two hydrodynamically distinct units, based on a theoretical approach developed for the electrophoresis of polyampholytes. Optimal experimental conditions tailored to the available label sizes and voltages are predicted along with insight into ideal label architecture.
机译:通过末端标记的自由溶液电泳(ELFSE)在DNA测序中的最新进展表明了这种新技术的前景,该技术通过使用标记(或拖动标签)来提供自由DNA大小的自由溶液迁移性,从而克服了对凝胶的需求-依赖。固定大小的不带电的阻滞标签分子与样品中各种长度的DNA的连接选择性地减慢了较小的DNA链,而较小的DNA链比较大的DNA具有较小的拉动阻力。迄今为止,只有整体随机的线圈构象与ELFSE有关,即DNA和标记一起形成了一个单一的,未变形的流体动力学单元。本文研究了为多两性电解质电泳开发的理论方法,将DNA和标记分离为两个流体动力学不同的单元的条件。可以预测适合于可用标签尺寸和电压的最佳实验条件,并深入了解理想的标签架构。

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