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PMID: 7613459 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S. Review

Principles of protein folding--a perspective from simple exact models.

Protein science : a publication of the Protein Society ·Vol. 4 ·No. 4 ·1995-04-00 ·Pages 561-602

Dill KA, Bromberg S, Yue K, Fiebig KM, Yee DP, Thomas PD, Chan HS

Abstract

General principles of protein structure, stability, and folding kinetics have recently been explored in computer simulations of simple exact lattice models. These models represent protein chains at a rudimentary level, but they involve few parameters, approximations, or implicit biases, and they allow complete explorations of conformational and sequence spaces. Such simulations have resulted in testable predictions that are sometimes unanticipated: The folding code is mainly binary and delocalized throughout the amino acid sequence. The secondary and tertiary structures of a protein are specified mainly by the sequence of polar and nonpolar monomers. More specific interactions may refine the structure, rather than dominate the folding code. Simple exact models can account for the properties that characterize protein folding: two-state cooperativity, secondary and tertiary structures, and multistage folding kinetics--fast hydrophobic collapse followed by slower annealing. These studies suggest the possibility of creating "foldable" chain molecules other than proteins. The encoding of a unique compact chain conformation may not require amino acids; it may require only the ability to synthesize specific monomer sequences in which at least one monomer type is solvent-averse.

MeSH Terms
Amino Acid Sequence Biological Evolution Hydrogen Bonding Models, Molecular Molecular Sequence Data Mutation Protein Conformation Protein Denaturation Protein Folding Temperature Thermodynamics
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Dill K A
Department of Pharmaceutical Chemistry, University of California, San Francisco 94143-1204, USA.
Bromberg S
Yue K
Fiebig K M
Yee D P
Thomas P D
Chan H S
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Article Info
Journal
Protein science : a publication of the Protein Society
Abbr.
Protein Sci
ISSN
0961-8368
Published
1995-04-00
Pages
561-602
Language
English
Region
United States
NLM ID
9211750
PMCID
PMC2143098
Subset
IM
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