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首页> 外文期刊>Physical review letters >Scraping and Stapling of End-Grafted DNA Chains by a Bioadhesive Spreading Vesicle to Reveal Chain Internal Friction and Topological Complexity
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Scraping and Stapling of End-Grafted DNA Chains by a Bioadhesive Spreading Vesicle to Reveal Chain Internal Friction and Topological Complexity

机译:通过生物胶粘剂扩散囊对末端接枝的DNA链进行刮擦和装订,以揭示链内部摩擦和拓扑复杂性

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摘要

Stained end-grafted DNA molecules about 20 μm long are scraped away and stretched out by the spreading front of a bioadhesive vesicle. Tethered biotin ligands bind the vesicle bilayer to a streptavidin substrate, stapling the DNAs into frozen confinement paths. Image analysis of the stapled DNA gives access, within optical resolution, to the local stretching values of individual DNA molecules swept by the spreading front, and provides evidence of self-entanglements.
机译:将被染色的约20μm长的末端嫁接的DNA分子刮除,并通过生物粘附囊泡的铺展前端拉伸。束缚的生物素配体将囊泡双层与抗生蛋白链菌素底物结合,将DNA钉入冷冻的封闭路径。在光学分辨率内,对装订的DNA进行图像分析可访问散布的前沿扫过的单个DNA分子的局部拉伸值,并提供自我纠缠的证据。

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