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Exploitation of the coil-globule plasmid DNA transition induced by small changes in temperature, pH salt, and poly(ethylene glycol) compositions for directed partitioning in aqueous two-phase systems

机译:利用温度,pH盐和聚(乙二醇)成分的细微变化诱导的螺旋球质粒DNA转变,以在水性两相系统中进行定向分配

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摘要

In this study, the interplay of two linked equilibria is examined, one concerning an aqueous two-phase system (ATPS) composed of poly(ethylene glycol) (PEG) and salt employed to partition plasmid DNA (pDNA), and the other a potential structural transition of pDNA depending on PEG and salt concentration and other system parameters. The boundary conditions for pDNA partitioning are set by PEG and salt concentrations, PEG molecular weight, pH, and temperature. While investigating these parameters, it was found that a small increase/decrease of the respective values led to a drastic and significant change in pDNA behavior. This behavior could be attributed to a coil-globule transition of the pDNA triggered by the respective phase conditions. The combination of this structural change, aggregation effects linked to the transition process, and the electrostatic potential difference found in PEG-salt systems thus offers a sensitive way to separate nucleic acid forms on the basis of their unique property to undergo coil-globule transitions under distinct system properties.
机译:在这项研究中,研究了两个连锁平衡的相互作用,一个涉及一种由聚乙二醇(PEG)和盐组成的水两相系统(ATPS),该盐用于分配质粒DNA(pDNA),另一种可能pDNA的结构转变取决于PEG和盐浓度以及其他系统参数。 pDNA分配的边界条件由PEG和盐浓度,PEG分子量,pH和温度设置。在研究这些参数时,发现各个值的小幅增加/减小会导致pDNA行为发生剧烈而显着的变化。该行为可归因于由各个相条件触发的pDNA的盘状球过渡。因此,这种结构变化,与过渡过程相关的聚集效应以及PEG-盐系统中发现的静电势差的组合提供了一种敏感的方法,可根据核酸形式的独特性质在核酸分子下经历线圈-小球过渡而分离核酸形式。独特的系统属性。

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