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首页> 外文期刊>Nature methods >STED nanoscopy combined with optical tweezers reveals protein dynamics on densely covered DNA
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STED nanoscopy combined with optical tweezers reveals protein dynamics on densely covered DNA

机译:STED纳米显微镜结合光学镊子揭示了紧密覆盖的DNA上的蛋白质动力学

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摘要

Dense coverage of DNA by proteins is a ubiquitous feature of cellular processes such as DNA organization, replication and repair. We present a single-molecule approach capable of visualizing individual DNA-binding proteins on densely covered DNA and in the presence of high protein concentrations. Our approach combines optical tweezers with multicolor confocal and stimulated emission depletion (STED) fluorescence microscopy. Proteins on DNA are visualized at a resolution of 50 nm, a sixfold resolution improvement over that of confocal microscopy. High temporal resolution (<50 ms) is ensured by fast one-dimensional beam scanning. Individual trajectories of proteins translocating on DNA can thus be distinguished and tracked with high precision. We demonstrate our multimodal approach by visualizing the assembly of dense nucleoprotein filaments with unprecedented spatial resolution in real time. Experimental access to the force-dependent kinetics and motility of DNA-associating proteins at biologically relevant protein densities is essential for linking idealized in vitro experiments with the in vivo situation.
机译:蛋白质对DNA的密集覆盖是细胞过程(如DNA组织,复制和修复)的普遍特征。我们提出了一种单分子方法,能够在高浓度蛋白质存在下可视化单个DNA结合蛋白在致密覆盖的DNA上。我们的方法将光学镊子与多色共聚焦和受激发射损耗(STED)荧光显微镜相结合。 DNA上的蛋白质以50 nm的分辨率可视化,比共聚焦显微镜的分辨率提高了六倍。快速的一维光束扫描可确保高时间分辨率(<50 ms)。因此,可以区分和追踪蛋白质在DNA上的个别运动轨迹,并进行高精度的追踪。我们通过可视化实时具有空前的空间分辨率的密集核蛋白丝的组装,展示了我们的多峰方法。在生物学上相关的蛋白质密度下,获得与DNA相关的蛋白质的力依赖性动力学和运动性的实验途径对于将理想的体外实验与体内情况联系起来至关重要。

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