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Single-stranded loops as end-label polarity markers for double-stranded linear DNA templates in atomic force microscopy

机译:单链环作为原子力显微镜中双链线性DNA模板的末端标签极性标记

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摘要

Visualization of DNA–protein interactions by atomic force microscopy (AFM) has deepened our understanding of molecular processes such as DNA transcription. Interpretation of systems where more than one protein acts on a single template, however, is complicated by protein molecules migrating along the DNA. Single-molecule AFM imaging experiments can reveal more information if the polarity of the template can be determined. A nucleic acid-based approach to end-labelling is desirable because it does not compromise the sample preparation procedures for biomolecular AFM. Here, we report a method involving oligonucleotide loop-primed synthesis for the end labelling of double-stranded DNA to discriminate the polarity of linear templates at the single-molecule level. Single-stranded oligonucleotide primers were designed to allow loop formation while retaining 3′-single-strand extensions to facilitate primer annealing to the template. Following a DNA polymerase extension, the labelled templates were shown to have the ability to form open promoter complexes on a model nested gene template using two Escherichia coli RNA polymerases in a convergent transcription arrangement. Analysis of the AFM images indicates that the added loops have no effect on the ability of the promoters to recruit RNA polymerase. This labelling strategy is proposed as a generic methodology for end-labelling linear DNA for studying DNA–protein interactions by AFM.
机译:通过原子力显微镜(AFM)可视化DNA与蛋白质的相互作用,加深了我们对诸如DNA转录等分子过程的理解。然而,由于蛋白质分子沿着DNA迁移,因此解释多个蛋白质作用于单个模板的系统变得复杂。如果可以确定模板的极性,单分子原子力显微镜成像实验可以揭示更多信息。基于核酸的末端标记方法是理想的,因为它不会损害生物分子AFM的样品制备程序。在这里,我们报告了一种方法,该方法涉及寡核苷酸环引发的合成,用于双链DNA的末端标记,以区分单分子水平的线性模板的极性。设计单链寡核苷酸引物以允许形成环,同时保留3'-单链延伸,以促进引物与模板退火。 DNA聚合酶延伸后,显示标记的模板具有使用会聚转录排列的两种大肠杆菌RNA聚合酶在模型嵌套基因模板上形成开放启动子复合体的能力。对AFM图像的分析表明,添加的环对启动子募集RNA聚合酶的能力没有影响。提出这种标记策略是作为末端标记线性DNA的通用方法,以研究AFM的DNA-蛋白质相互作用。

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