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Combining Primed Photoconversion and UV-Photoactivation for Aberration-Free, Live-Cell Compliant Multi-Color Single-Molecule Localization Microscopy Imaging

机译:结合底漆光电转化和UV - 光活化,无像差,活细胞兼容的多色单分子定位显微镜成像

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摘要

Super-resolution fluorescence microscopy plays a major role in revealing the organization and dynamics of living cells. Nevertheless, single-molecule localization microscopy imaging of multiple targets is still limited by the availability of suitable fluorophore combinations. Here, we introduce a novel imaging strategy which combines primed photoconversion (PC) and UV-photoactivation for imaging different molecular species tagged by suitable fluorescent protein combinations. In this approach, the fluorescent proteins can be specifically photoactivated/-converted by different light wavelengths using PC and UV-activation modes but emit fluorescence in the same spectral emission channel. We demonstrate that this aberration-free, live-cell compatible imaging method can be applied to various targets in bacteria, yeast and mammalian cells and can be advantageously combined with correlative imaging schemes.
机译:超分辨率荧光显微镜在揭示活细胞的组织和动态方面发挥着重要作用。然而,通过合适的荧光团组合的可用性仍然限制多个靶的单分子定位显微镜成像。这里,我们介绍一种新的成像策略,该策略结合了底漆的光电转换(PC)和UV-PhotoCtivation,用于通过合适的荧光蛋白质组合成像标记的不同分子物质。在这种方法中,可以使用PC和UV激活模式通过不同的光波长特异性地光活化/ - 通过不同的光波长进行特异性的光激活/ - 在相同的光谱发射通道中发射荧光。我们证明这种无像差,活细胞相容的成像方法可以应用于细菌,酵母和哺乳动物细胞中的各种靶标,并且可以有利地与相关成像方案组合。

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