Kinetics and thermodynamics of folding in model proteins.
- 1 July 1993
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 90 (13) , 6369-6372
- https://doi.org/10.1073/pnas.90.13.6369
Abstract
Monte Carlo simulations on a class of lattice models are used to probe the thermodynamics and kinetics of protein folding. We find two transition temperatures: one at T theta, when chains collapse from a coil to a compact phase, and the other at Tf (< T theta), when chains adopt a conformation corresponding to their native state. The kinetics are probed by several correlation functions and are interpreted in terms of the underlying energy landscape. The transition from the coil to the native state occurs in three distinct stages. The initial stage corresponds to a random collapse of the protein chain. At intermediate times tau c, during which much of the native structure is acquired, there are multiple pathways. For longer times tau r (>> tau c) the decay is exponential, suggestive of a late transition state. The folding time scale (approximately tau r) varies greatly depending on the model. Implications of our results for in vitro folding of proteins are discussed.Keywords
This publication has 16 references indexed in Scilit:
- Up the kinetic pathwayNature, 1992
- Relaxation dynamics of myoglobin in solutionPhysical Review Letters, 1992
- The Energy Landscapes and Motions of ProteinsScience, 1991
- Dominant forces in protein foldingBiochemistry, 1990
- Origins of structure in globular proteins.Proceedings of the National Academy of Sciences, 1990
- Dynamic Monte Carlo simulations of globular protein folding/unfolding pathwaysJournal of Molecular Biology, 1990
- Formation of unique structure in polypeptide chainsBiophysical Chemistry, 1989
- Glassy behavior of a proteinPhysical Review Letters, 1989
- Studies on protein folding, unfolding and fluctuations by computer simulation. I. The effect of specific amino acid sequence represented by specific inter-unit interactions.1975
- Principles that Govern the Folding of Protein ChainsScience, 1973