Criteria for folding in structure-based models of proteins
Abstract
In structure-based models of proteins, one often assumes that folding is accomplished when all contacts are established. This assumption may frequently lead to a conceptual problem that folding takes place in a temperature region of very low thermodynamic stability, especially when the contact map used is too sparse. We consider six different structure-based models and show that allowing for a small, but model-dependent, percentage of the native contacts not being established boosts the folding temperature substantially while affecting the time scales of folding only in a minor way. We also compare other properties of the six models. We show that the choice of the description of the backbone stiffness has a substantial effect on the values of characteristic temperatures that relate both to equilibrium and kinetic properties. Models without any backbone stiffness (like the self-organized polymer) are found to perform similar to those with the stiffness, including in the studies of stretching.
Keywords
Cite
@article{arxiv.1605.06379,
title = {Criteria for folding in structure-based models of proteins},
author = {Karol Wołek and Marek Cieplak},
journal= {arXiv preprint arXiv:1605.06379},
year = {2016}
}
Comments
8 pages, 4 figures