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Fluorescence resonance energy transfer imaging of cell signaling from in vitro to in vivo: Basis of biosensor construction, live imaging, and image processing

机译:从体内到体内细胞信号的荧光共振能量转移成像:生物传感器构建,实时成像和图像处理的基础

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摘要

The progress in imaging technology with fluorescent proteins has uncovered a wide range of biological processes in developmental biology. In particular, genetically-encoded biosensors based on the principle of fluorescence resonance energy transfer (FRET) have been used to visualize spatial and temporal dynamics of intracellular signaling in living cells. However, development of sensitive FRET biosensors and their application to developmental biology remain challenging tasks, which has prevented their widespread use in developmental biology. In this review, we first overview general procedures and tips of imaging with FRET biosensors. We then describe recent advances in FRET imaging namely, the use of optimized backbones for intramolecular FRET biosensors and transposon-mediated gene transfer to generate stable cell lines and transgenic mice expressing FRET biosensors. Finally, we discuss future perspectives of FRET imaging in developmental biology.
机译:荧光蛋白成像技术的进步已经发现了发育生物学中广泛的生物学过程。尤其是,基于荧光共振能量转移(FRET)原理的基因编码生物传感器已用于可视化活细胞中细胞内信号传导的时空动态。然而,敏感的FRET生物传感器的开发及其在发育生物学中的应用仍然是具有挑战性的任务,这阻止了它们在发育生物学中的广泛使用。在本文中,我们首先概述了使用FRET生物传感器进行成像的一般步骤和技巧。然后,我们描述FRET成像的最新进展,即分子内FRET生物传感器的优化骨架的使用和转座子介导的基因转移,以产生稳定的细胞系和表达FRET生物传感器的转基因小鼠。最后,我们讨论了发展生物学中FRET成像的未来观点。

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