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High Spatiotemporal-Resolution Magnetic Tweezers: Calibration and Applications for DNA Dynamics

机译:高时空分辨率磁性镊子:DNA动力学的校准和应用

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摘要

The observation of biological processes at the molecular scale in real time requires high spatial and temporal resolution. Magnetic tweezers are straightforward to implement, free of radiation or photodamage, and provide ample multiplexing capability, but their spatiotemporal resolution has lagged behind that of other single-molecule manipulation techniques, notably optical tweezers and AFM. Here, we present, to our knowledge, a new high-resolution magnetic tweezers apparatus. We systematically characterize the achievable spatiotemporal resolution for both incoherent and coherent light sources, different types and sizes of beads, and different types and lengths of tethered molecules. Using a bright coherent laser source for illumination and tracking at 6 kHz, we resolve 3 Å steps with a 1 s period for surface-melted beads and 5 Å steps with a 0.5 s period for double-stranded-dsDNA-tethered beads, in good agreement with a model of stochastic bead motion in the magnetic tweezers. We demonstrate how this instrument can be used to monitor the opening and closing of a DNA hairpin on millisecond timescales in real time, together with attendant changes in the hairpin dynamics upon the addition of deoxythymidine triphosphate. Our approach opens up the possibility of observing biological events at submillisecond timescales with subnanometer resolution using camera-based detection.
机译:实时观察分子规模的生物过程需要高的空间和时间分辨率。磁性镊子易于实现,没有辐射或光损坏,并提供足够的多路复用能力,但其时空分辨率落后于其他单分子操纵技术,尤其是光学镊子和AFM。在此,据我们所知,我们展示了一种新型的高分辨率磁镊子设备。我们系统地描述了非相干光源和相干光源,不同类型和大小的珠子以及不同类型和长度的束缚分子可实现的时空分辨率。使用明亮的相干激光源以6 kHz的频率进行照明和跟踪,我们可以很好地解析3Å步(对于表面融化的珠子为1周期)和5Å步(对于双链dsDNA束缚的珠子为0.5周期)与电磁镊子中的随机磁珠运动模型一致。我们演示了该仪器如何用于在毫秒时间尺度上实时监测DNA发夹的打开和关闭,以及伴随着脱氧胸苷三磷酸添加后发夹动力学的随之变化。我们的方法提供了使用基于照相机的检测以亚纳米分辨率在亚毫秒时间尺度上观察生物事件的可能性。

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