An algebro-geometric model for the shape of supercoiled DNA
Soft Condensed Matter
2022-01-05 v3 Mathematical Physics
math.MP
Exactly Solvable and Integrable Systems
Biological Physics
Medical Physics
Abstract
This article proposes a model including thermal effects for closed supercoiled DNA. Existing models include an elastic rod. Euler's elastica, ideal elastic rods on a plane, have only two kinds of closed shapes, the circle and a figure-eight, realized as minima of the Euler-Bernoulli energy. Even considering three dimensional effects, this elastica model provides much simpler shapes than observed via Atomic-Force Microscope (AFM), since the minimal points of the energy are expressed by elliptic functions. In this paper, by a generalization of elastica, we obtain shapes determined by data of hyperelliptic curves, which partially reproduce the shapes and properties of the DNA.
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Cite
@article{arxiv.2105.05635,
title = {An algebro-geometric model for the shape of supercoiled DNA},
author = {Shigeki Matsutani and Emma Previato},
journal= {arXiv preprint arXiv:2105.05635},
year = {2022}
}
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23 pages