English

A Criterion That Determines Fast Folding of Proteins: A Model Study

chem-ph 2009-10-28 v1 Condensed Matter Chemical Physics

Abstract

We consider the statistical mechanics of a full set of two-dimensional protein-like heteropolymers, whose thermodynamics is characterized by the coil-to-globular (TθT_\theta) and the folding (TfT_f) transition temperatures. For our model, the typical time scale for reaching the unique native conformation is shown to scale as τfF(M)exp(σ/σ0)\tau_f\sim F(M)\exp(\sigma/\sigma_0), where σ=1Tf/Tθ\sigma=1-T_f/T_\theta, MM is the number of residues, and F(M)F(M) scales algebraically with MM. We argue that TfT_f scales linearly with the inverse of entropy of low energy non-native states, whereas TθT_\theta is almost independent of it. As σ0\sigma\rightarrow 0, non-productive intermediates decrease, and the initial rapid collapse of the protein leads to structures resembling the native state. Based solely on {\it accessible} information, σ\sigma can be used to predict sequences that fold rapidly.

Keywords

Cite

@article{arxiv.chem-ph/9604004,
  title  = {A Criterion That Determines Fast Folding of Proteins: A Model Study},
  author = {Carlos J. Camacho and D. Thirumalai},
  journal= {arXiv preprint arXiv:chem-ph/9604004},
  year   = {2009}
}

Comments

10 pages, latex, figures upon request

R2 v1 2026-07-22T09:57:36.218Z