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Quantification of DNA-associated proteins inside eukaryotic cells using single-molecule localization microscopy

机译:使用单分子定位显微镜定量真核细胞内的DNA相关蛋白

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Development of single-molecule localization microscopy techniques has allowed nanometre scale localization accuracy inside cells, permitting the resolution of ultra-fine cell structure and the elucidation of crucial molecular mechanisms. Application of these methodologies to understanding processes underlying DNA replication and repair has been limited to defined in vitro biochemical analysis and prokaryotic cells. In order to expand these techniques to eukaryotic systems, we have further developed a photo-activated localization microscopybased method to directly visualize DNA-associated proteins in unfixed eukaryotic cells. We demonstrate that motion blurring of fluorescence due to protein diffusivity can be used to selectively image the DNA-bound population of proteins. We designed and tested a simple methodology and show that it can be used to detect changes in DNA binding of a replicative helicase subunit, Mcm4, and the replication sliding clamp, PCNA, between different stages of the cell cycle and between distinct genetic backgrounds.
机译:单分子定位显微镜技术的发展已使细胞内的纳米级定位精度,允许超细细胞结构的解析和关键分子机制的阐明。这些方法在理解DNA复制和修复过程中的应用仅限于定义的体外生化分析和原核细胞。为了将这些技术扩展到真核系统,我们进一步开发了一种基于光活化定位显微镜的方法,可以直接可视化未固定真核细胞中的DNA相关蛋白。我们证明,由于蛋白质扩散引起的荧光运动模糊可用于选择性成像蛋白质的DNA结合种群。我们设计并测试了一种简单的方法,并表明它可用于检测细胞周期不同阶段之间以及不同遗传背景之间的复制解旋酶亚基Mcm4和复制滑动钳PCNA的DNA结合变化。

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