School of Physics, Georgia Institute of Technology, 837 State Street, Atlanta, GA 30332-0430, USA.
Nucleic Acids Res. 2023 Apr 24;51(7):3030-3040. doi: 10.1093/nar/gkad118.
The hybridization and dehybridization of DNA subject to tension is relevant to fundamental genetic processes and to the design of DNA-based mechanobiology assays. While strong tension accelerates DNA melting and decelerates DNA annealing, the effects of tension weaker than 5 pN are less clear. In this study, we developed a DNA bow assay, which uses the bending rigidity of double-stranded DNA (dsDNA) to exert weak tension on a single-stranded DNA (ssDNA) target in the range of 2-6 pN. Combining this assay with single-molecule FRET, we measured the hybridization and dehybridization kinetics between a 15 nt ssDNA under tension and a 8-9 nt oligonucleotide, and found that both the hybridization and dehybridization rates monotonically increase with tension for various nucleotide sequences tested. These findings suggest that the nucleated duplex in its transition state is more extended than the pure dsDNA or ssDNA counterpart. Based on coarse-grained oxDNA simulations, we propose that this increased extension of the transition state is due to steric repulsion between the unpaired ssDNA segments in close proximity to one another. Using linear force-extension relations verified by simulations of short DNA segments, we derived analytical equations for force-to-rate conversion that are in good agreement with our measurements.
DNA 的杂交和去杂交受张力影响,这与基本的遗传过程和基于 DNA 的机械生物学检测的设计有关。虽然强张力会加速 DNA 的熔化并减缓 DNA 的退火,但小于 5 pN 的张力的影响则不太清楚。在这项研究中,我们开发了一种 DNA 弓实验,该实验利用双链 DNA (dsDNA) 的弯曲刚度,在 2-6 pN 的范围内对单链 DNA (ssDNA) 靶标施加弱张力。将该实验与单分子 FRET 相结合,我们测量了在张力下 15nt ssDNA 与 8-9nt 寡核苷酸之间的杂交和解杂交动力学,发现对于测试的各种核苷酸序列,杂交和解杂交速率都随张力单调增加。这些发现表明,在过渡状态下,引发的双链体比纯 dsDNA 或 ssDNA 对应物更加伸展。基于粗粒化 oxDNA 模拟,我们提出这种过渡状态下的增加伸展是由于彼此靠近的未配对 ssDNA 片段之间的空间排斥。使用通过短 DNA 片段模拟验证的线性力-延伸关系,我们推导出了用于力-速率转换的解析方程,这些方程与我们的测量结果非常吻合。