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A bright cyan-excitable orange fluorescent protein facilitates dual-emission microscopy and enhances bioluminescence imaging in vivo

机译:明亮的青色可激发橙色荧光蛋白有助于双发射显微镜检查并增强体内生物发光成像

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摘要

Orange-red fluorescent proteins (FPs) are widely used in biomedical research for multiplexed epifluorescence microscopy with GFP-based probes, but their different excitation requirements make multiplexing with new advanced microscopy methods difficult. Separately, orange-red FPs are useful for deep-tissue imaging in mammals due to the relative tissue transmissibility of orange-red light, but their dependence on illumination limits their sensitivity as reporters in deep tissues. Here we describe CyOFP1, a bright engineered orange-red FP that is excitable by cyan light. We show that CyOFP1 enables single-excitation multiplexed imaging with GFP-based probes in single-photon and two-photon microscopy, including time-lapse imaging in light-sheet systems. CyOFP1 also serves as an efficient acceptor for resonance energy transfer from the highly catalytic blue-emitting luciferase NanoLuc. An optimized fusion of CyOFP1 and NanoLuc, called Antares, functions as a highly sensitive bioluminescent reporter in vivo, producing substantially brighter signals from deep tissues than firefly luciferase and other bioluminescent proteins.
机译:橙红色荧光蛋白(FPs)已广泛用于生物医学研究中,以基于GFP的探针进行多重表层荧光显微镜检查,但是其不同的激发要求使得与新的先进显微镜方法进行多重检测变得困难。另外,由于橙红色光的相对组织可透射性,橙红色FP可用于哺乳动物的深层组织成像,但是橙红色FP对照明的依赖性限制了它们作为深层组织中报道分子的敏感性。在这里,我们描述CyOFP1,这是一种明亮的工程橙红色FP,可被蓝绿色光激发。我们显示CyOFP1能够在单光子和两光子显微镜中使用基于GFP的探针进行单激发多路成像,包括在光片系统中的延时成像。 CyOFP1也是从高催化发蓝光的荧光素酶NanoLuc传递共振能量的有效受体。 CyOFP1和NanoLuc的优化融合体,称为Antares,在体内起着高度敏感的生物发光报告基因的作用,与萤火虫荧光素酶和其他生物发光蛋白相比,从深部组织产生的信号要明亮得多。

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