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Rational design of a monomeric and photostable far-red fluorescent protein for fluorescence imaging in vivo

机译:合理设计单体和光稳定的远红外荧光蛋白,用于体内荧光成像

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摘要

Fluorescent proteins (FPs) are powerful tools for cell and molecular biology. Here based on structural analysis, a blue-shifted mutant of a recently engineered monomeric infrared fluorescent protein (mIFP) has been rationally designed. This variant, named iBlueberry, bears a single mutation that shifts both excitation and emission spectra by approximately 40 nm. Furthermore, iBlueberry is four times more photostable than mIFP, rendering it more advantageous for imaging protein dynamics. By tagging iBlueberry to centrin, it has been demonstrated that the fusion protein labels the centrosome in the developing zebrafish embryo. Together with GFP-labeled nucleus and tdTomato-labeled plasma membrane, time-lapse imaging to visualize the dynamics of centrosomes in radial glia neural progenitors in the intact zebrafish brain has been demonstrated. It is further shown that iBlueberry can be used together with mIFP in two-color protein labeling in living cells and in two-color tumor labeling in mice.
机译:荧光蛋白(FPs)是细胞和分子生物学的强大工具。在此,基于结构分析,已经合理地设计了最近工程化的单体红外荧光蛋白(mIFP)的蓝移突变体。这个名为iBlueberry的变体带有一个突变,它将激发和发射光谱都移动了约40 nm。此外,iBlueberry的光稳定性是mIFP的四倍,因此对于成像蛋白质动力学更有利。通过将iBlueberry标记为centrin,已证明融合蛋白标记了正在发育的斑马鱼胚胎中的中心体。连同GFP标记的核和tdTomato标记的质膜一起,已经证明了延时成像可以使完整的斑马鱼大脑中的放射状胶质神经祖细胞中的中心体动态化。进一步表明,iBlueberry可与mIFP一起用于活细胞中的双色蛋白质标记和小鼠中的双色肿瘤标记。

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