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A Stroboscopic Approach for Fast Photoactivation-Localization Microscopy with Dronpa Mutants

机译:Dronpa突变体的快速光激活-定位显微镜的频闪方法。

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The photophysical properties and photoswitching scheme of the reversible photoswitchable green fluorescent protein-like fluorescent proteins Dronpa-2 and Dronpa-3 were investigated by means of ensemble and single-molecule fluorescence spectroscopy and compared to those of the precursor protein Dronpa. The faster response to light and the faster dark recovery of the new mutants observed in bulk also hold at the single-molecule level. Analysis of the single-molecule traces allows us to extract the efficiencies and rate constants of the pathways involved in the forward and backward switching, and we find important differences when comparing the mutants to Dronpa. We rationalize our results in terms of a higher conformational freedom of the chromophore in the protein environment provided by the β-can. This thorough understanding of the photophysical parameters has allowed us to optimize the acquisition parameters for camera-based sub-diffraction-limit imaging with these photochromic proteins. We show that Dronpa and its mutants are useful for fast photoactivation-localization microscopy (PALM) using common wide-field microscopy equipment, as individual fluorescent proteins can be localized several times. We provide a new approach to achieve fast PALM by introducing simultaneous two-color stroboscopic illumination.
机译:通过集成和单分子荧光光谱研究了可逆光开关绿色荧光蛋白样荧光蛋白Dronpa-2和Dronpa-3的光物理性质和光开关方案,并将其与前体蛋白Dronpa进行了比较。整体上观察到的新突变体对光的响应更快,而黑暗恢复更快,也保持在单分子水平。对单分子迹线的分析使我们能够提取出前进和后退转换中所涉及途径的效率和速率常数,并且在将突变体与Dronpa进行比较时发现了重要差异。我们根据β-can提供的蛋白质环境中发色团的更高构象自由度来合理化我们的结果。对光物理参数的透彻理解使我们能够优化使用这些光致变色蛋白的基于相机的亚衍射极限成像的采集参数。我们显示,Dronpa及其突变体可用于使用常见的宽视野显微镜设备进行快速光激活定位显微镜(PALM),因为单个荧光蛋白可以定位多次。我们通过引入同时双色频闪照明提供了一种实现快速PALM的新方法。

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