English

Capture of rod-like molecules by a nanopore: defining an "orientational capture radius"

Biological Physics 2020-06-25 v1 Chemical Physics Computational Physics

Abstract

Both the translational diffusion coefficient DD and the electrophoretic mobility μ\mu of a short rod-like molecule (such as dsDNA) that is being pulled towards a nanopore by an electric field should depend on its orientation. Since a charged rod-like molecule tends to orient in the presence of an inhomogeneous electric field, DD and μ\mu will change as the molecule approaches the nanopore, and this will impact the capture process. We present a simplified study of this problem using theoretical arguments and Langevin Dynamics simulations. In particular, we introduce a new \textit{orientational capture radius} which we compare to the capture radius for the equivalent point-like particle, and we discuss the different physical regimes of orientation during capture and the impact of initial orientations on the capture time.

Keywords

Cite

@article{arxiv.2006.13338,
  title  = {Capture of rod-like molecules by a nanopore: defining an "orientational capture radius"},
  author = {Le Qiao and Gary W. Slater},
  journal= {arXiv preprint arXiv:2006.13338},
  year   = {2020}
}