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Far-Red Fluorescent Protein Excitable with Red Lasers for Flow Cytometry and Superresolution STED Nanoscopy

机译:流式细胞仪和超分辨率STED纳米显微镜可激发红色激光激发的远红色荧光蛋白

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摘要

Far-red fluorescent proteins are required for deep-tissue and whole-animal imaging and multicolor labeling in the red wavelength range, as well as probes excitable with standard red lasers in flow cytometry and fluorescence microscopy. Rapidly evolving superresolution microscopy based on the stimulated emission depletion approach also demands genetically encoded monomeric probes to tag intracellular proteins at the molecular level. Based on the monomeric mKate variant, we have developed a far-red TagRFP657 protein with excitation/emission maxima at 611/657 nm. TagRFP657 has several advantages over existing monomeric far-red proteins including higher photostability, better pH stability, lower residual green fluorescence, and greater efficiency of excitation with red lasers. The red-shifted excitation and emission spectra, as compared to other far-red proteins, allows utilizing TagRFP657 in flow cytometry and fluorescence microscopy simultaneously with orange or near-red fluorescence proteins. TagRFP657 is shown to be an efficient protein tag for the superresolution fluorescence imaging using a commercially available stimulated emission depletion microscope.
机译:深层组织和全动物成像以及在红色波长范围内进行多色标记需要远红外荧光蛋白,并且在流式细胞仪和荧光显微镜检查中可以用标准红色激光激发的探针需要远红外荧光蛋白。基于受激发射耗竭方法的快速发展的超分辨率显微镜还需要基因编码的单体探针在分子水平上标记细胞内蛋白质。基于单体mKate变体,我们开发了一种远红外TagRFP657蛋白,其最大激发/发射波长为611/657 nm。 TagRFP657与现有的单体远红蛋白相比具有多个优势,包括更高的光稳定性,更好的pH稳定性,更低的残留绿色荧光以及更高的红色激光激发效率。与其他远红蛋白相比,红移的激发和发射光谱允许与橙色或近红荧光蛋白同时在流式细胞仪和荧光显微镜中使用TagRFP657。 TagRFP657显示为使用市售受激发射耗尽显微镜进行超分辨率荧光成像的有效蛋白质标签。

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