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High spatiotemporal resolution data from a custom magnetic tweezers instrument

机译:来自定制磁镊子仪器的高时空分辨率数据

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摘要

Gene expression is achieved by enzymes as RNA polymerases that translocate along nucleic acids with steps as small as a single base pair, i.e., 0.34 nm for DNA. Deciphering the complex biochemical pathway that describes the activity of such enzymes requires an exquisite spatiotemporal resolution. Magnetic tweezers are a powerful single molecule force spectroscopy technique that uses a camera-based detection to enable the simultaneous observation of hundreds of nucleic acid tethered magnetic beads at a constant force with subnanometer resolution [1,2]. High spatiotemporal resolution magnetic tweezers have recently been reported [3–5]. We present data acquired using a bespoke magnetic tweezers instrument that is able to perform either in high throughput or at high resolution. The data reports on the best achievable resolution for surface-attached polystyrene beads and DNA tethered magnetic beads, and highlights the influence of mechanical stability for such assay. We also present data where we are able to detect 0.3 nm steps along the z-axis using DNA tethered magnetic beads. Because the data presented here are in agreement with the best resolution obtained with magnetic tweezers, they provide a useful benchmark comparison for setup adjustment and optimization.
机译:基因表达是通过作为RNA聚合酶的酶实现的,该酶沿着核酸移位的步长只有一个碱基对,即DNA的0.34nm。解释描述此类酶活性的复杂生化途径需要精湛的时空分辨率。磁镊子是一种强大的单分子力谱技术,它使用基于照相机的检测功能,以恒定的力以亚纳米分辨率同时观察数百个核酸束缚的磁珠[1,2]。最近已经报道了高时空分辨率的磁性镊子[3-5]。我们介绍了使用定制的磁镊子仪器获得的数据,该仪器能够以高通量或高分辨率执行。数据报告了表面附着的聚苯乙烯珠和DNA束缚磁珠的最佳可实现分辨率,并强调了机械稳定性对此类测定的影响。我们还介绍了能够使用DNA束缚磁珠沿z轴检测到0.3?nm步长的数据。由于此处显示的数据与用镊子获得的最佳分辨率相符,因此它们为设置调整和优化提供了有用的基准比较。

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