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首页> 外文期刊>Analytical and bioanalytical chemistry >DNA molecule manipulation by motor proteins for analysis at the single-molecule level
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DNA molecule manipulation by motor proteins for analysis at the single-molecule level

机译:通过运动蛋白操纵DNA分子以进行单分子水平的分析

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摘要

Massively parallel and individual DNA manipulation for analysis has been demonstrated by designing a fully self-assembled molecular system using motor proteins. DNA molecules were immobilized by trapping in a polyacrylamide gel replica, and were digested by a restriction enzyme, XhoI, for DNA analysis. One end of the lambda DNA was modified with biotin and the other end was modified with digoxin molecules by fragment labeling and ligation methods. The digoxin-functionalized end was immobilized on a glass surface coated with anti-digoxigenin antibody. The biotinylated end was freely suspended and experienced Brownian motion in a buffer solution. The free end was attached to a biotinylated microtubule via avidin-biotin biding and the DNA was stretched by a kinesin-based gliding assay. A stretched DNA molecule was fixed between the gel and coverslip to observe the cleavage of the DNA by the enzyme, which was supplied through the gel network structure. This simple process flow from DNA manipulation to analysis offers a new method of performing molecular surgery at the single-molecule scale.
机译:通过使用运动蛋白设计完全自组装的分子系统,已证明了大规模并行和个体DNA分析操作。通过捕获在聚丙烯酰胺凝胶复制物中来固定DNA分子,并用限制酶XhoI消化以进行DNA分析。通过片段标记和连接方法,lambda DNA的一端被生物素修饰,另一端被地高辛分子修饰。将地高辛官能化的末端固定在涂有抗洋地黄毒苷抗体的玻璃表面上。将生物素化的末端自由悬浮并在缓冲溶液中经历布朗运动。通过抗生物素蛋白-生物素结合将自由端连接至生物素化的微管,并通过基于驱动蛋白的滑动测定法拉伸DNA。将拉伸的DNA分子固定在凝胶和盖玻片之间,以观察酶对DNA的切割,该酶是通过凝胶网络结构提供的。从DNA操作到分析的简单过程流程提供了一种在单分子规模上进行分子手术的新方法。

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