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首页> 外文期刊>ACS nano >GMars-Q Enables Long-Term Live-Cell Parallelized Reversible Saturable Optical Fluorescence Transitions Nanoscopy
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GMars-Q Enables Long-Term Live-Cell Parallelized Reversible Saturable Optical Fluorescence Transitions Nanoscopy

机译:GMars-Q可实现长期活细胞并行可逆可饱和光学荧光跃迁纳米技术

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摘要

The recent development of reversibly switch able fluorescent proteins (RSFPs) has promoted reversible saturable optical fluorescence transitions (RESOLFT) nanoscopy as a general scheme for live-cell super-resolution imaging. However, continuous, long-term live-cell RESOLFT nanoscopy is still hindered mainly because of the unsatisfactory properties of existing RSFPs. In this work, we report GMars-Q a monomeric RSFP with low residual off state fluorescence and strong fatigue resistance attributed to a biphasic photobleaching process. We further demonstrate that GMars-Q is particularly suitable for long-term parallelized RESOLFT nanoscopy as it supports an order of magnitude longer imaging durations than existing RSFPs. The excellent photophysical properties of GMars-Q also suggest that it would be of general interest for other RESOLFT nanoscopic methods.
机译:可逆转换的荧光蛋白(RSFP)的最新发展促进了可逆的饱和光学荧光跃迁(RESOLFT)纳米技术作为活细胞超分辨率成像的通用方案。然而,连续,长期的活细胞RESOLFT纳米显微镜检查仍然受到阻碍,这主要是由于现有RSFP的性能不令人满意。在这项工作中,我们报告了GMars-Q单体RSFP,该单体RSFP具有低残留离态荧光和强抗疲劳性,归因于双相光漂白过程。我们进一步证明,GMars-Q特别适合于长期平行的RESOLFT纳米技术,因为它支持比现有RSFP更长的成像时间。 GMars-Q的出色的光物理性质也表明,它将被其他RESOLFT纳米方法普遍关注。

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