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Translational mobilities of proteins in nanochannels: A coarse-grained molecular dynamics study

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posted on 2024-07-26, 14:41 authored by Navaneeth Haridasan, Sridhar KannamSridhar Kannam, Santosh Mogurampelly, Sarith P. Sathian
We investigated the translation of a protein through model nanopores using coarse-grained (CG) nonequilibrium molecular dynamics (NEMD) simulations and compared the mobilities with those obtained from previous coarse-grained equilibrium molecular dynamics model. We considered the effects of nanopore confinement and external force on the translation of streptavidin through nanopores of dimensions representative of experiments. As the nanopore radius approaches the protein hydrodynamic radius, rh/rp→1 (where rh is the hydrodynamic radius of protein and rp is the pore radius), the translation times are observed to increase by two orders of magnitude. The translation times are found to be in good agreement with the one-dimensional biased diffusion model. The results presented in this paper provide useful insights on nanopore designs intended to control the motion of biomolecules.

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ISSN

2470-0053

Journal title

Physical Review E

Volume

97

Issue

6

Article number

article no. 062415

Pagination

1 p

Publisher

American Physical Society

Copyright statement

Copyright © 2018 American Physical Society. The published version is reproduced in accordance with the copyright policy of the publisher.

Language

eng

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