Veeraraghavan Rengasayee, Gourdie Robert G
Center for Heart and Regenerative Medicine Research, Virginia Tech Carilion Research Institute, Roanoke, VA 24016
School of Biomedical Engineering and Sciences, Virginia Polytechnic University, Blacksburg, VA 24016.
Mol Biol Cell. 2016 Nov 7;27(22):3583-3590. doi: 10.1091/mbc.E16-02-0125. Epub 2016 Jun 15.
The spatial association between proteins is crucial to understanding how they function in biological systems. Colocalization analysis of fluorescence microscopy images is widely used to assess this. However, colocalization analysis performed on two-dimensional images with diffraction-limited resolution merely indicates that the proteins are within 200-300 nm of each other in the xy-plane and within 500-700 nm of each other along the z-axis. Here we demonstrate a novel three-dimensional quantitative analysis applicable to single-molecule positional data: stochastic optical reconstruction microscopy-based relative localization analysis (STORM-RLA). This method offers significant advantages: 1) STORM imaging affords 20-nm resolution in the xy-plane and <50 nm along the z-axis; 2) STORM-RLA provides a quantitative assessment of the frequency and degree of overlap between clusters of colabeled proteins; and 3) STORM-RLA also calculates the precise distances between both overlapping and nonoverlapping clusters in three dimensions. Thus STORM-RLA represents a significant advance in the high-throughput quantitative assessment of the spatial organization of proteins.
蛋白质之间的空间关联对于理解它们在生物系统中的功能至关重要。荧光显微镜图像的共定位分析被广泛用于评估这一点。然而,在具有衍射极限分辨率的二维图像上进行的共定位分析仅表明蛋白质在xy平面内彼此相距200 - 300纳米,在z轴上彼此相距500 - 700纳米。在此,我们展示了一种适用于单分子位置数据的新型三维定量分析方法:基于随机光学重建显微镜的相对定位分析(STORM - RLA)。该方法具有显著优势:1)STORM成像在xy平面提供20纳米分辨率,沿z轴分辨率小于50纳米;2)STORM - RLA对共标记蛋白质簇之间重叠的频率和程度进行定量评估;3)STORM - RLA还能计算三维中重叠和非重叠簇之间的精确距离。因此,STORM - RLA在蛋白质空间组织的高通量定量评估方面代表了一项重大进展。