Publication: Determination of pair-wise inter-residue interaction forces from folding pathways and their implementation in coarse-grained folding prediction
Program
KU-Authors
KU Authors
Co-Authors
Editor & Affiliation
Compiler & Affiliation
Translator
Other Contributor
Date
Language
Type
Embargo Status
Journal Title
Journal ISSN
Volume Title
Alternative Title
Abstract
Interaction forces among residue pairs are determined from optimum folding pathways along which a protein represented as a coarse-grained chain of alpha-carbons goes from different initial configurations to a known native state. A dynamic optimization approach is employed that uses the coarse-grained model to compute the optimal folding pathways. The pair-wise interaction forces obtained in this manner are incorporated into the coarse-grained model which is then simulated to fold the protein from a new set of initial configurations in a predictive way. We show that the folding pathways predicted in this manner are near-optimal. We applied the technique to the secondary structures: helix and beta-sheet.
Source
Publisher
Royal Soc Chemistry
Subject
Chemistry, Physical, Physics, Atomic, Molecular, Chemical
Citation
Has Part
Source
Physical Chemistry Chemical Physics
Book Series Title
Edition
DOI
10.1039/b820801h
