Institute of Organic Chemistry and Biochemistry, Czech Academy of Science, Praha 6, Czech Republic.
Center for Nanobiology and Structural Biology, Institute of Microbiology, Czech Academy of Science, Nove Hrady, Czech Republic.
Commun Biol. 2021 Feb 12;4(1):189. doi: 10.1038/s42003-021-01694-1.
Fluorescence-detected linear dichroism microscopy allows observing various molecular processes in living cells, as well as obtaining quantitative information on orientation of fluorescent molecules associated with cellular features. Such information can provide insights into protein structure, aid in development of genetically encoded probes, and allow determinations of lipid membrane properties. However, quantitating and interpreting linear dichroism in biological systems has been laborious and unreliable. Here we present a set of open source ImageJ-based software tools that allow fast and easy linear dichroism visualization and quantitation, as well as extraction of quantitative information on molecular orientations, even in living systems. The tools were tested on model synthetic lipid vesicles and applied to a variety of biological systems, including observations of conformational changes during G-protein signaling in living cells, using fluorescent proteins. Our results show that our tools and model systems are applicable to a wide range of molecules and polarization-resolved microscopy techniques, and represent a significant step towards making polarization microscopy a mainstream tool of biological imaging.
荧光探测线偏光显微镜能够观察活细胞中的各种分子过程,还能提供与细胞特征相关的荧光分子取向的定量信息。此类信息能够深入了解蛋白质结构,帮助开发遗传编码探针,并能够确定脂质膜的性质。然而,在生物系统中定量和解释线偏光一直是繁琐且不可靠的。在这里,我们展示了一组基于 ImageJ 的开源软件工具,这些工具允许快速轻松地对线偏光进行可视化和定量,以及提取分子取向的定量信息,即使在活系统中也是如此。我们在模型合成脂质囊泡上测试了这些工具,并将其应用于各种生物系统,包括使用荧光蛋白观察活细胞中 G 蛋白信号传导过程中的构象变化。我们的结果表明,我们的工具和模型系统适用于广泛的分子和偏振分辨显微镜技术,这是将偏振显微镜作为生物成像主流工具的重要一步。