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Assessing Protein Dynamics on Low-Complexity Single-Stranded DNA Curtains

机译:在低复杂度单链DNA窗帘上评估蛋白质动力学

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摘要

Single-stranded DNA (ssDNA) is a critical intermediate in all DNA transactions. Because ssDNA is more flexible than double-stranded (ds) DNA, interactions with ssDNA-binding proteins (SSBs) may significantly compact or elongate the ssDNA molecule. Here, we develop and characterize low-complexity ssDNA curtains, a high-throughput single-molecule assay to simultaneously monitor protein binding and correlated ssDNA length changes on supported lipid bilayers. Low-complexity ssDNA is generated via rolling circle replication of short synthetic oligonucleotides, permitting control over the sequence composition and secondary structure-forming propensity. One end of the ssDNA is functionalized with a biotin, while the second is fluorescently labeled to track the overall DNA length. Arrays of ssDNA molecules are organized at microfabricated barriers for high-throughput single-molecule imaging. Using this assay, we demonstrate that E. coli SSB drastically and reversibly compacts ssDNA templates upon changes in NaCl concentration. We also examine the interactions between a phosphomimetic RPA and ssDNA. Our results indicate that RPA-ssDNA interactions are not significantly altered by these modifications. We anticipate that low-complexity ssDNA curtains will be broadly useful for single-molecule studies of ssDNA-binding proteins involved in DNA replication, transcription, and repair.
机译:单链DNA(ssDNA)是所有DNA交易中的关键中间体。由于ssDNA比双链(ds)DNA更灵活,因此与ssDNA结合蛋白(SSB)的相互作用可能会显着压缩或延长ssDNA分子。在这里,我们开发并表征低复杂度的ssDNA幕布,这是一种高通量的单分子测定法,可同时监测蛋白质结合和支持的脂质双层上相关的ssDNA长度变化。低复杂度的ssDNA是通过短合成寡核苷酸的滚环复制产生的,从而可以控制序列组成和二级结构形成倾向。 ssDNA的一端被生物素功能化,而另一端被荧光标记以追踪总DNA长度。 ssDNA分子的阵列在微加工的壁垒处组织起来,以实现高通量单分子成像。使用该测定法,我们证明了当NaCl浓度发生变化时,大肠杆菌SSB可以大幅度且可逆地压缩ssDNA模板。我们还检查了仿磷酸盐RPA和ssDNA之间的相互作用。我们的结果表明,这些修饰不会显着改变RPA-ssDNA的相互作用。我们预期低复杂度的ssDNA幕布将广泛用于涉及DNA复制,转录和修复的ssDNA结合蛋白的单分子研究。

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