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Probing and quantifying DNA-protein interactions with asymmetrical flow field-flow fractionation

机译:用不对称流场-流分馏探测和定量DNA-蛋白质相互作用

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Tools capable of measuring binding affinities as well as amenable to downstream sequencing analysis are needed for study of DNA-protein interaction, particularly in discovery of new DNA sequences with affinity to diverse targets. Asymmetrical flow field-flow fractionation (AF4) is an open-channel separation technique that eliminates interference from column packing to the non-covalently bound complex and could potentially be applied for study of macromolecular interaction. The recovery and elution behaviors of the poly(dA)_n strand and aptamers in AF4 were investigated. Good recovery of ssDNAs was achieved by judicious selection of the channel membrane with consideration of the membrane pore diameter and the radius of gyration (Rg) of the ssDNA, which was obtained with the aid of a Molecular Dynamics tool. The Rg values were also used to assess the folding situation of aptamers based on their migration times in AF4. The interactions between two ssDNA aptamers and their respective protein components were investigated. Using AF4, near-baseline resolution between the free and protein-bound aptamer fractions could be obtained. With this information, dissociation constants of ~16 nM and ~57 nM were obtained for an IgE aptamer and a streptavidin aptamer, respectively. In addition, free and protein-bound IgE aptamer was extracted from the AF4 eluate and amplified, illustrating the potential of AF4 in screening ssDNAs with high affinity to targets. Our results demonstrate that AF4 is an effective tool holding several advantages over the existing techniques and should be useful for study of diverse macromolecular interaction systems.
机译:研究DNA-蛋白质相互作用,特别是发现对各种靶标具有亲和力的新DNA序列时,需要能够测量结合亲和力并适于下游测序分析的工具。非对称流场-流分馏(AF4)是一种开放通道的分离技术,可消除柱填充对非共价结合的复合物的干扰,可潜在地用于研究大分子相互作用。研究了poly(dA)_n链和适体在AF4中的回收和洗脱行为。考虑到膜孔径和ssDNA的回转半径(Rg)的合理选择,可以通过选择通道膜来实现ssDNA的良好回收,这是借助分子动力学工具获得的。 Rg值也用于根据适体在AF4中的迁移时间评估其折叠情况。研究了两个ssDNA适体及其各自蛋白质成分之间的相互作用。使用AF4,可以获得游离和蛋白结合的适体组分之间的接近基线的分辨率。利用该信息,对于IgE适体和链霉亲和素适体分别获得了约16nM和约57nM的解离常数。此外,从AF4洗脱物中提取并结合了游离的和结合蛋白的IgE适体,并进行了扩增,说明了AF4在筛选对靶标具有高度亲和力的ssDNA方面的潜力。我们的结果表明,AF4是一种有效的工具,具有优于现有技术的多个优点,对于研究各种大分子相互作用系统应该很有用。

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