Bergues-Pupo A E, Bergues J M, Falo F, Fiasconaro A
Departamento de Física de la Materia Condensada, Facultad de Ciencias, Universidad de Zaragoza, 50009, Zaragoza, Spain,
Eur Phys J E Soft Matter. 2015 May;38(5):126. doi: 10.1140/epje/i2015-15041-4. Epub 2015 May 22.
Single-molecule experiments combined with alternate forces are able to provide useful information not present in standard constant-force and -velocity pulling protocols. Here, we study the effects of such forces in the DNA mechanical unzipping by using an extension of the Peyrard-Bishop-Dauxois model. By changing the damping regime in the dynamical equations, we obtained two resonant mechanisms in both the mean time and the mean force of unzipping. One is thermally assisted and it is characterized by a matching between the period of the external force and the mean unzipping time of the DNA chain, while the other depends on the inertial properties of the system. Both mechanisms are studied systematically under different opening protocols and different parameters of the system. The main results here presented contribute in characterizing and finding optimized conditions in DNA unzipping experiments.
结合交变力的单分子实验能够提供标准恒力和恒速拉伸实验中不存在的有用信息。在此,我们通过扩展佩亚尔德 - 毕晓普 - 多索模型来研究此类力在DNA机械解链中的作用。通过改变动力学方程中的阻尼机制,我们在解链的平均时间和平均力方面获得了两种共振机制。一种是热辅助的,其特征是外力周期与DNA链的平均解链时间相匹配,而另一种则取决于系统的惯性特性。在不同的打开协议和系统参数下,对这两种机制进行了系统研究。本文呈现的主要结果有助于表征和解链实验中找到优化条件。