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Competitive Assays of Label-Free DNA Hybridization with Single-Molecule Fluorescence Imaging Detection

机译:无标记DNA杂交与单分子荧光成像检测的竞争性检测

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Single-molecule imaging of fluorescently labeled biomolecules is a powerful technique for measuring association interactions; however, care must be taken to ensure that the fluorescent labels do not influence the system being probed. Label free techniques are needed to understand biomolecule interactions free from the influence of an attached label, but these techniques often lack sensitivity and specificity. To solve these challenges, we have developed a competitive assay that uses single-molecule detection to track the population of unlabeled target single-stranded DNA (ssDNA) hybridized with probe DNA immobilized at a glass interface by detecting individual duplexes with a fluorescently labeled "tracer" ssDNA. By labeling a small fraction (<0.2%) of target molecules, the "tracer" DNA tracks the available probe DNA sites without significant competition with the unlabeled target population. Single-molecule fluorescence imaging is a good read-out scheme for competitive assays, as it is sufficiently sensitive to detect tracer DNA on substrates with relatively low densities of probe DNA, similar to 10(-3) of a monolayer, so that steric interactions do not hinder DNA hybridization. Competitive assays are used to measure the association constant of complementary strand DNA hybridization of 9- and 10-base pair targets, where the tracer assay predicts the same association constant as a traditional displacement competitive assay. This methodology was used to compare the K-a of hybridization for identical DNA strands differing only by the presence of a fluorescent label tethered to the 5' end of the solution-phase target. The addition of the fluorescent label significantly stabilizes the DNA duplex by 3.6 kgmol(-1), adding more stability than an additional adenine-thymine base-pairing interaction, 2.7 kJmol(-1). This competitive tracer assay could be used to screen a number of labeled and unlabeled target DNA strands to measure the impact of fluorescent labeling on duplex stability. This single-molecule competitive hybridization scheme could be easily adapted into a sensitive assay, where competition between tracer and target oligonucleotides for probe sites could be used to measure concentrations of unlabeled DNA or RNA.
机译:荧光标记生物分子的单分子成像是一种测量缔合相互作用的强大技术。但是,必须注意确保荧光标记不会影响所探测的系统。需要无标记的技术来了解不受附着标记影响的生物分子相互作用,但是这些技术通常缺乏敏感性和特异性。为解决这些挑战,我们开发了一种竞争性检测方法,该方法使用单分子检测来跟踪未标记的目标单链DNA(ssDNA)的种群,该目标单链DNA与固定在玻璃界面上的探针DNA杂交,方法是使用荧光标记的“示踪剂”检测单个双链体ssDNA。通过标记一小部分(<0.2%)的目标分子,“示踪剂” DNA可以跟踪可用的探针DNA位点,而不会与未标记的目标群体显着竞争。单分子荧光成像是一种用于竞争性测定的良好读出方案,因为它足够灵敏,可以检测具有相对低密度的探针DNA的底物上的示踪剂DNA,类似于单层的10(-3),因此空间相互作用不妨碍DNA杂交。竞争性测定法用于测量9个碱基对和10个碱基对靶标的互补链DNA杂交的缔合常数,其中示踪剂测定法预测与传统置换竞争测定法相同的缔合常数。该方法用于比较相同DNA链的杂交K-a,区别仅在于存在与溶液相靶标5'末端相连的荧光标记。荧光标记的添加通过3.6 kgmol(-1)显着稳定了DNA双链体,比其他腺嘌呤-胸腺嘧啶碱基配对相互作用2.7 kJmol(-1)增加了更多的稳定性。这种竞争性示踪剂测定可用于筛选许多标记和未标记的靶DNA链,以测量荧光标记对双链体稳定性的影响。这种单分子竞争性杂交方案可以轻松地应用于灵敏的测定中,其中示踪剂和靶寡核苷酸之间对探针位点的竞争可用于测量未标记的DNA或RNA的浓度。

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