Anal Chem. 2019 Feb 19;91(4):2822-2830. doi: 10.1021/acs.analchem.8b04733. Epub 2019 Feb 6.
DNA can interact with a wide array of molecules with a range of binding affinities, stoichiometry, and size-scales. We present a sensitive, quantitative, and versatile platform for sensing and evaluating these diverse DNA-biomolecule interactions and DNA conformational changes in free solution. Single molecule free solution hydrodynamic separation utilizes differences in hydrodynamic mobility to separate bound DNA-biomolecule complexes from unbound DNA and determine the associated size change that results from binding. Single molecule detection enables highly quantitative analysis of the fraction of DNA in the bound and unbound state to characterize binding behavior including affinity, stoichiometry, and cooperativity. A stacked injection scheme increases throughput to enable practical analysis of DNA-biomolecule interactions using only picoliters of sample per measurement. To demonstrate analysis of DNA-protein interactions on a local scale, we investigate binding of the E. coli single stranded binding protein to two DNA oligos both individually and in direct competition. We show that stoichiometry and cooperativity is a function of DNA length and verify these differences in binding characteristics through direct competition. To demonstrate analysis of DNA-small molecule interactions and global conformational changes, we also assess DNA condensation with the polyamine spermidine. We use hydrodynamic mobility to evaluate the size of spermidine-condensed DNA and single molecule burst analysis to evaluate DNA packing within the condensed globules relative to free-coiled DNA. This platform thus presents a versatile tool capable of quantitative and sensitive evaluation of diverse biomolecular interactions, complex properties, and binding characteristics.
DNA 可以与具有一系列结合亲和力、化学计量和大小尺度的多种分子相互作用。我们提出了一种灵敏、定量和通用的平台,用于在游离溶液中感测和评估这些不同的 DNA-生物分子相互作用和 DNA 构象变化。单分子游离溶液流体力学分离利用流体力学迁移率的差异来分离结合的 DNA-生物分子复合物与未结合的 DNA,并确定结合导致的相关大小变化。单分子检测能够对结合和未结合状态下的 DNA 进行高度定量分析,以表征结合行为,包括亲和力、化学计量和协同性。堆叠注入方案提高了吞吐量,使得仅使用每个测量的皮升样品即可对 DNA-生物分子相互作用进行实际分析。为了在局部范围内分析 DNA-蛋白质相互作用,我们研究了大肠杆菌单链结合蛋白与两个 DNA 寡核苷酸的单独和直接竞争结合。我们表明,化学计量和协同性是 DNA 长度的函数,并通过直接竞争验证了这些结合特性的差异。为了演示 DNA-小分子相互作用和整体构象变化的分析,我们还评估了多胺亚精胺与 DNA 的缩合。我们使用流体力学迁移率来评估亚精胺缩合 DNA 的大小,并使用单分子爆发分析来评估相对于自由卷曲 DNA 的缩合球体内的 DNA 包装。因此,该平台提供了一种通用工具,能够定量和灵敏地评估多种生物分子相互作用、复杂性质和结合特性。