Twist dynamics and buckling instability of ring DNA: Effect of groove asymmetry and anisotropic bending

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Hauptverfasser: Fosado, Yair Augusto Gutierrez, Landuzzi, Fabio, Sakaue, Takahiro
Format: Preprint
Veröffentlicht: 2020
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author Fosado, Yair Augusto Gutierrez
Landuzzi, Fabio
Sakaue, Takahiro
author_facet Fosado, Yair Augusto Gutierrez
Landuzzi, Fabio
Sakaue, Takahiro
contents By combining analytical theory and Molecular Dynamics simulations we study the relaxation dynamics of DNA circular plasmids that initially undergo a local twist perturbation. We identify three distinctive time scales; (I) a rapid relaxation of local bending, (II) the slow twist spreading, and (III) the buckling transition taking place in a much longer time scale. In all of these stages, the twist-bend coupling arising from the groove asymmetry in DNA double helix clearly manifests. In particular, the separation of time scales allows to deduce an effective diffusion equation in stage (II), with a diffusion coefficient influenced by the twist-bend coupling. We also discuss the mapping of the realistic DNA model to the simplest isotropic twistable worm-like chain using the renormalized bending and twist moduli; although useful in many cases, it fails to make a quantitative prediction on the instability mode of buckling transition.
format Preprint
id arxiv_https___arxiv_org_abs_2008_05686
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Twist dynamics and buckling instability of ring DNA: Effect of groove asymmetry and anisotropic bending
Fosado, Yair Augusto Gutierrez
Landuzzi, Fabio
Sakaue, Takahiro
Soft Condensed Matter
By combining analytical theory and Molecular Dynamics simulations we study the relaxation dynamics of DNA circular plasmids that initially undergo a local twist perturbation. We identify three distinctive time scales; (I) a rapid relaxation of local bending, (II) the slow twist spreading, and (III) the buckling transition taking place in a much longer time scale. In all of these stages, the twist-bend coupling arising from the groove asymmetry in DNA double helix clearly manifests. In particular, the separation of time scales allows to deduce an effective diffusion equation in stage (II), with a diffusion coefficient influenced by the twist-bend coupling. We also discuss the mapping of the realistic DNA model to the simplest isotropic twistable worm-like chain using the renormalized bending and twist moduli; although useful in many cases, it fails to make a quantitative prediction on the instability mode of buckling transition.
title Twist dynamics and buckling instability of ring DNA: Effect of groove asymmetry and anisotropic bending
topic Soft Condensed Matter
url https://arxiv.org/abs/2008.05686