扭转
磁镊
DNA
化学物理
联轴节(管道)
盐(化学)
熵(时间箭头)
耦合常数
化学
生物物理学
分子物理学
材料科学
热力学
物理
复合材料
生物化学
生物
物理化学
几何学
粒子物理学
数学
作者
Chen Zhang,Fujia Tian,Ying Lü,Bing Yuan,Zhi-Jie Tan,Xinghua Zhang,Liang Dai
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2022-03-23
卷期号:8 (12)
被引量:16
标识
DOI:10.1126/sciadv.abn1384
摘要
DNA deformations upon environmental changes, e.g., salt and temperature, play crucial roles in many biological processes and material applications. Here, our magnetic tweezers experiments observed that the increase in NaCl, KCl, or RbCl concentration leads to substantial DNA overwinding. Our simulations and theoretical calculation quantitatively explain the salt-induced twist change through the mechanism: More salt enhances the screening of interstrand electrostatic repulsion and hence reduces DNA diameter, which is transduced to twist increase through twist-diameter coupling. We determined that the coupling constant is 4.5 ± 0.8 kBT/(degrees∙nm) for one base pair. The coupling comes from the restraint of the contour length of DNA backbone. On the basis of this coupling constant and diameter-dependent DNA conformational entropy, we predict the temperature dependence of DNA twist Δωbp/ΔT ≈ -0.01 degree/°C, which agrees with our and previous experimental results. Our analysis suggests that twist-diameter coupling is a common driving force for salt- and temperature-induced DNA twist changes.
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