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The elastic properties of single double-stranded DNA chains of different lengths as measured with optical tweezers

机译:用光镊测量不同长度的单双链DNA链的弹性

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摘要

Optical tweezers are microscopic tools with extraordinary precision in the determination of the position (±2 nm) of a colloid (diameter: ∼2.0 μm) in 3D-space and in the measurement of small forces in the range between 0.1 and 100 pN (pN=10−12 N). Experiments are reported in which single double-stranded (ds)-DNA chains of different length [2,000 base pairs (bp), 3,000, 4,000, and 6,000 bp] are spanned between two colloidal particles by use of appropriate molecular linkers. For the forces applied (≤40 pN) a fully reversible and well reproducible force–extension dependence is found. The data can be well described by both the worm-like chain model or by an approach developed by R. G. Winkler. For the resulting persistence length, a pronounced dependence on the ionic concentration in the surrounding medium is found.
机译:光学镊子是显微工具,在确定3D空间中胶体(直径:〜2.0μm)的位置(±2 nm)以及测量0.1至100 pN(pN)范围内的小力方面具有非凡的精度= 10 −12 N)。据报道,通过使用适当的分子接头,不同长度[2,000个碱基对(bp),3,000、4,000和6,000 bp]的单双链(ds)-DNA链跨在两个胶体颗粒之间,据实验报道。对于施加的力(≤40pN),发现了完全可逆且可重复性很好的力-延伸依赖性。数据可以通过类蠕虫链模型或R. G. Winkler开发的方法很好地描述。对于产生的持久性长度,发现对周围介质中离子浓度的明显依赖性。

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