论文标题

共聚焦荧光 - 千篇一律的单分子定位显微镜的超级分辨FRET成像

Super-resolved FRET imaging by confocal fluorescence-lifetime single-molecule localization microscopy

论文作者

Zaza, Cecilia, Chiarelli, Germán, Zweifel, Ludovit P., Pilo-Pais, Mauricio, Sisamakis, Evangelos, Barachati, Fabio, Stefani, Fernando D., Acuna, Guillermo P.

论文摘要

基于FRET的方法是感测(BIO)分子的周围环境和相互作用的独特工具。 FRET成像和FLIM(荧光寿命成像显微镜)使分子相互作用和功能状态的空间分布的可视化能够可视化。但是,常规的FLIM和FRET成像在衍射限制体积内的分子集合中提供了平均信息,从而限制了所观察到的信号的空间信息,准确性和动态范围。在这里,我们展示了一种使用商业时间分辨共聚焦显微镜的早期原型基于单分子定位显微镜获得超分子定位显微镜的方法。 DNA点在纳米级地形(DNA-Paint)中的成像积累,它具有荧光探针的合适组合,可将背景还原和闪烁的动力学与常规共焦显微镜的扫描速度兼容。单个激光用于激发供体,使用广泛的检测频段来检索供体和受体发射,并从终生信息中检测到fret事件。

FRET-based approaches are a unique tool for sensing the immediate surroundings and interactions of (bio)molecules. FRET imaging and FLIM (Fluorescence Lifetime Imaging Microscopy) enable the visualization of the spatial distribution of molecular interactions and functional states. However, conventional FLIM and FRET imaging provide average information over an ensemble of molecules within a diffraction-limited volume, which limits the spatial information, accuracy, and dynamic range of the observed signals. Here, we demonstrate an approach to obtain super-resolved FRET imaging based on single-molecule localization microscopy using an early prototype of a commercial time-resolved confocal microscope. DNA Points Accumulation for Imaging in Nanoscale Topography (DNA-PAINT) with fluorogenic probes provides a suitable combination of background reduction and blinking kinetics compatible with the scanning speed of usual confocal microscopes. A single laser is used to excite the donor, a broad detection band is employed to retrieve both donor and acceptor emission, and FRET events are detected from lifetime information.

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