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Photoswitchable fluorescent proteins enable monochromatic multilabel imaging and dual color fluorescence nanoscopy.

机译:光可开关的荧光蛋白可实现单色多标签成像和双色荧光纳米显微镜检查。

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摘要

Fluorescent proteins that can be reversibly photoswitched between a fluorescent and a nonfluorescent state are important for innovative microscopy schemes, such as protein tracking, fluorescence resonance energy transfer imaging, sub-diffraction resolution microscopy and others. However, all available monomeric reversibly switchable fluorescent proteins (RSFPs) have similar properties and switching characteristics, thereby limiting their use. Here, we introduce two bright green fluorescent RSFPs, bsDronpa and Padron, generated by extensive mutagenesis of the RSFP Dronpa, with unique absorption and switching characteristics. Whereas bsDronpa features a broad absorption spectrum extending into the UV, Padron displays a switching behavior that is reversed to that of all green fluorescent RSFPs known to date. These two RSFPs enable live-cell fluorescence microscopy with multiple labels using a single detection color, because they can be distinguished by photoswitching. Furthermore, we demonstrate dual-color fluorescence microscopy with sub-diffraction resolution using bsDronpa and Dronpa whose emission maxima are separated by <20 nm.
机译:可以在荧光状态和非荧光状态之间可逆地进行光切换的荧光蛋白对于创新的显微镜方案非常重要,例如蛋白质跟踪,荧光共振能量转移成像,亚衍射分辨率显微镜等。但是,所有可用的单体可逆转换荧光蛋白(RSFP)具有相似的特性和转换特性,从而限制了它们的使用。在这里,我们介绍了两种亮绿色的荧光RSFP,分别是bsDronpa和Padron,它们是由RSFP Dronpa的广泛诱变产生的,具有独特的吸收和转换特性。 bsDronpa具有延伸到紫外线的宽吸收光谱,而Padron显示的开关行为与迄今为止已知的所有绿色荧光RSFP相反。这两个RSFP可以通过一种检测颜色使用多个标记进行活细胞荧光显微镜检查,因为它们可以通过光开关进行区分。此外,我们展示了使用bsDronpa和Dronpa的亚衍射分辨率的双色荧光显微镜,其最大发射相距<20 nm。

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