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Fluorescence Intensity Decay Shape Analysis Microscopy (FIDSAM) for Quantitative and Sensitive Live-Cell Imaging: A Novel Technique for Fluorescence Microscopy of Endogenously Expressed Fusion-Proteins

机译:用于定量和敏感活细胞成像的荧光强度衰变形状分析显微镜(FIDSAM):内源表达的融合蛋白的荧光显微镜的新技术。

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摘要

Fluorescent studies of living plant cells such as confocal microscopy and fluorescence lifetime imaging often suffer from a strong autof luorescent background contribution that significantly reduces the dynamic image contrast and the quantitative access to sub-cellular processes at high spatial resolution. Here, we present a novel technique—fluorescence intensity decay shape analysis microscopy (FIDSAM)—to enhance the dynamic contrast of a fluorescence image of at least one order of magnitude. The method is based on the analysis of the shape of the fluorescence intensity decay (fluorescence lifetime curve) and benefits from the fact that the decay patterns of typical fluorescence label dyes strongly differ from emission decay curves of autof luorescent sample areas. Using FIDSAM, we investigated Arabidopsis thaliana hypocotyl cells in their tissue environment, which accumulate an eGFP fusion of the plasma membrane marker protein LTI6b (LTI6b-eGFP) to low level. Whereas in conventional confocal fluorescence images, the membranes of neighboring cells can hardly be optically resolved due to the strong autofluorescence of the cell wall, FIDSAM allows for imaging of single, isolated membranes at high spatial resolution. Thus, FIDSAM will enable the sub-cellular analysis of even low-expressed fluorophore-tagged proteins in living plant cells. Furthermore, the combination of FIDSAM with fluorescence lifetime imaging provides the basis to study the local physico-chemical environment of fluorophore-tagged biomolecules in living plant cells.
机译:活植物细胞的荧光研究(例如共聚焦显微镜和荧光寿命成像)通常遭受强大的自发荧光背景贡献,这大大降低了动态图像对比度和在高空间分辨率下对亚细胞过程的定量获取。在这里,我们提出了一种新技术-荧光强度衰减形状分析显微镜(FIDSAM)-可以增强至少一个数量级的荧光图像的动态对比度。该方法基于对荧光强度衰减的形状(荧光寿命曲线)的分析,并受益于以下事实:典型的荧光标记染料的衰减模式与自发荧光样品区域的发射衰减曲线存在很大差异。使用FIDSAM,我们调查了拟南芥下胚轴细胞的组织环境,这些细胞将质膜标志物蛋白LTI6b(LTI6b-eGFP)的eGFP融合物积聚到低水平。在常规的共聚焦荧光图像中,由于细胞壁强烈的自发荧光,相邻细胞的膜很难被光学分辨,而FIDSAM可以在高空间分辨率下对单个分离的膜进行成像。因此,FIDSAM将使活植物细胞中即使是低表达的荧光团标记蛋白也能进行亚细胞分析。此外,FIDSAM与荧光寿命成像的结合为研究活植物细胞中荧光团标记的生物分子的局部物理化学环境提供了基础。

著录项

  • 来源
    《Molecular Plant》 |2010年第3期|p.555-562|共8页
  • 作者单位

    Center for Plant Molecular Biology, Department of Plant Physiology, University of Tubingen, Auf der Morgenstelle 1, 72076 Tubingen, Germany;

    Institute of Physical and Theoretical Chemistry, University of Tubingen, Auf der Morgenstelle 8, 72076 Tubingen, Germany;

    Institute of Physical and Theoretical Chemistry, University of Tubingen, Auf der Morgenstelle 8, 72076 Tubingen, Germany;

    Center for Plant Molecular Biology, Department of Plant Physiology, University of Tubingen, Auf der Morgenstelle 1, 72076 Tubingen, Germany;

    Center for Plant Molecular Biology, Department of Plant Physiology, University of Tubingen, Auf der Morgenstelle 1, 72076 Tubingen, Germany;

    Institute of Physical and Theoretical Chemistry, University of Tubingen, Auf der Morgenstelle 8, 72076 Tubingen, Germany;

    Center for Plant Molecular Biology, Department of Plant Physiology, University of Tubingen, Auf der Morgenstelle 1, 72076 Tubingen, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cell structure; cell walls; membrane proteins; high-resolution fluorescence microscopy;

    机译:细胞结构细胞壁;膜蛋白高分辨率荧光显微镜;
  • 入库时间 2022-08-17 13:55:49

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