Lattice models of protein folding permitting disordered native states
نویسندگان
چکیده
Self-avoiding lattice walks are often used as minimalist models of proteins. Typically, the polypeptide chain is represented as a lattice walk with each amino acid residue lying on a lattice point, and the Hamiltonian being a sum of interactions between pairs of sequentially nonadjacent residues on adjacent points. Interactions depend on the types of the two residues, and there are usually two or more types. A sequence is said to fold to a particular ‘‘native’’ conformation if the ground state is nondegenerate, i.e., that native conformation is the unique global energy minimum conformation. However, real proteins have some flexibility in the folded state. If this is permitted in a lattice model, the most stably and cooperatively folding sequences have very disordered native states unless the Hamiltonian either favors only a few specific interactions or includes a solvation term. The result points the way toward qualitatively more realistic lattice models for protein folding. © 2002 American Institute of Physics. @DOI: 10.1063/1.1433745#
منابع مشابه
Simple Models of Protein Folding
Lattice models with simplified interaction potentials have been used to analyze the ability of certain amino acid sequences to adopt a unique configuration in space [1, 2, 3]. Furthermore, phenomenological models have been used to predict protein folding kinetics amongst a subset of energetically favorable states [4, 5]. In the following, I will specifically discuss both the use of two dimensio...
متن کاملThe Importance of Hydration for the Kinetics and Thermodynamics of Protein Folding: Simpli ed Lattice Models
Background: Recent studies have proposed various sources for the origin of cooperativity in simpliied protein folding models. Important contributions to cooperativity that have been discussed include backbone hydrogen bonding, side-chain packing, and hydrophobic interactions. Related work has also focused on what interactions are responsible for making the free energy of the native structure a ...
متن کاملStructural Characteristics of Stable Folding Intermediates of Yeast Iso-1-Cytochrome-c
Cytochrome-c (cyt-c) is an electron transport protein, and it is present throughout the evolution. More than 280 sequences have been reported in the protein sequence database (www.uniprot.org). Though sequentially diverse, cyt-c has essentially retained its tertiary structure or fold. Thus a vast data set of varied sequences with retention of similar structure and fun...
متن کاملHow optimization of potential functions affects protein folding.
The relationship between the optimization of the potential function and the foldability of theoretical protein models is studied based on investigations of a 27-mer cubic-lattice protein model and a more realistic lattice model for the protein crambin. In both the simple and the more complicated systems, optimization of the energy parameters achieves significant improvements in the statistical-...
متن کاملPrediction of protein-folding mechanisms from free-energy landscapes derived from native structures.
Guided by recent experimental results suggesting that protein-folding rates and mechanisms are determined largely by native-state topology, we develop a simple model for protein folding free-energy landscapes based on native-state structures. The configurations considered by the model contain one or two contiguous stretches of residues ordered as in the native structure with all other residues ...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2002