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Single molecule high-resolution colocalization of Cy3 and Cy5 attached to macromolecules measures intramolecular distances through time

机译:附着于大分子的Cy3和Cy5的单分子高分辨率共定位可测量分子间距离

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摘要

Here we present a technique called single-molecule high-resolution colocalization (SHREC) of fluorescent dyes that allows the measurement of interfluorophore distances in macromolecules and macromolecular complexes with better than 10-nm resolution. By using two chromatically differing fluorescent molecules as probes, we are able to circumvent the Rayleigh criterion and measure distances much smaller than 250 nm. The probes are imaged separately and localized individually with high precision. The registration between the two imaging channels is measured by using fiduciary markers, and the centers of the two probes are mapped onto the same space. Multiple measurements can be made before the fluorophores photobleach, allowing intramolecular and intermolecular distances to be tracked through time. This technique's lower resolution limit lies at the upper resolution limit of single molecule FRET (smFRET) microscopy. The instrumentation and fluorophores used for SHREC can also be used for smFRET, allowing the two types of measurements to be made interchangeably, covering a wide range of interfluorophore distances. A dual-labeled duplex DNA molecule (30 bp) was used as a 10-nm molecular ruler to confirm the validity of the method. We also used SHREC to study the motion of myosin V. We directly observed myosin V's alternating heads while it walked hand-over-hand along an actin filament.
机译:在这里,我们介绍了一种称为荧光染料的单分子高分辨率共定位(SHREC)的技术,该技术可以测量分辨率高于10 nm的大分子和大分子复合物中的荧光团间距离。通过使用两个色度不同的荧光分子作为探针,我们能够规避瑞利标准并测量远小于250 nm的距离。探头分别成像,并分别高精度定位。通过使用基准标记来测量两个成像通道之间的配准,并将两个探针的中心映射到同一空间。可以在荧光团光漂白之前进行多次测量,从而可以随时间追踪分子内和分子间的距离。该技术的较低分辨率极限位于单分子FRET(smFRET)显微镜的较高分辨率极限。用于SHREC的仪器和荧光团也可以用于smFRET,从而可以互换进行两种类型的测量,涵盖了很宽的荧光团间距离范围。使用双标记的双链DNA分子(30 bp)作为10 nm分子尺,以确认该方法的有效性。我们还使用SHREC研究了肌球蛋白V的运动。我们直接观察了肌球蛋白V沿着肌动蛋白丝相互交叠的交替头部。

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