Modelling the unfolding pathway of biomolecules: theoretical approach and experimental prospect
Abstract
We analyse the unfolding pathway of biomolecules comprising several independent modules in pulling experiments. In a recently proposed model, a critical velocity has been predicted, such that for pulling speeds it is the module at the pulled end that opens first, whereas for it is the weakest. Here, we introduce a variant of the model that is closer to the experimental setup, and discuss the robustness of the emergence of the critical velocity and of its dependence on the model parameters. We also propose a possible experiment to test the theoretical predictions of the model, which seems feasible with state-of-art molecular engineering techniques.
Keywords
Cite
@article{arxiv.1706.02475,
title = {Modelling the unfolding pathway of biomolecules: theoretical approach and experimental prospect},
author = {Carlos A. Plata and Antonio Prados},
journal= {arXiv preprint arXiv:1706.02475},
year = {2018}
}
Comments
Accepted contribution for the Springer Book "Coupled Mathematical Models for Physical and Biological Nanoscale Systems and Their Applications" (proceedings of the BIRS CMM16 Workshop held in Banff, Canada, August 2016), 16 pages, 6 figures