Prediction of side-chain conformations is an important component of several biological modeling applications. In this work, we have developed and tested an advanced Monte Carlo sampling strategy for predicting side-chain conformations. Our method is based on a cooperative rearrangement of atoms that belong to a group of neighboring side-chains. This rearrangement is accomplished by deleting groups of atoms from the side-chains in a particular region, and regrowing them with the generation of trial positions that depends on both a rotamer library and a molecular mechanics potential function. This method allows us to incorporate flexibility about the rotamers in the library and explore phase space in a continuous fashion about the primary rot...
ABSTRACT A major problem in predicting amino acid side-chain rearrangements following pointmutations...
Sampling alternative conformations is key to understanding how proteins work and engineering them fo...
Side chain optimization refers to the problem of repacking sidechain atoms on a fixed backbone so as...
We report a Monte Carlo side chain entropy (MC-SCE) method that uses a physical energy function incl...
SummaryWe report a Monte Carlo side chain entropy (MC-SCE) method that uses a physical energy functi...
Abstract Background Accurately covering the conformational space of amino acid side chains is essent...
SummaryWe report a Monte Carlo side chain entropy (MC-SCE) method that uses a physical energy functi...
This dissertation explores the self-consistent mean field (SCMF) algorithm for protein side-chain pr...
Conformational flexibility is key to the function of many proteins and is thus an important focus fo...
MOTIVATION: Identifying the probable positions of the protein side-chains is one of the protein mode...
Background: Atomic level rotamer libraries for sidechains in proteins have been proposed by several ...
Sampling alternative conformations is key to understanding how proteins work and engineering them fo...
An accurate potential function is essential to attack protein folding and structure prediction probl...
Molecular simulations are a valuable tool for studying biomolecular motions and thermodynamics. Howe...
Although the protein backbone is the most fundamental part of the structure, the fine-tuning of side...
ABSTRACT A major problem in predicting amino acid side-chain rearrangements following pointmutations...
Sampling alternative conformations is key to understanding how proteins work and engineering them fo...
Side chain optimization refers to the problem of repacking sidechain atoms on a fixed backbone so as...
We report a Monte Carlo side chain entropy (MC-SCE) method that uses a physical energy function incl...
SummaryWe report a Monte Carlo side chain entropy (MC-SCE) method that uses a physical energy functi...
Abstract Background Accurately covering the conformational space of amino acid side chains is essent...
SummaryWe report a Monte Carlo side chain entropy (MC-SCE) method that uses a physical energy functi...
This dissertation explores the self-consistent mean field (SCMF) algorithm for protein side-chain pr...
Conformational flexibility is key to the function of many proteins and is thus an important focus fo...
MOTIVATION: Identifying the probable positions of the protein side-chains is one of the protein mode...
Background: Atomic level rotamer libraries for sidechains in proteins have been proposed by several ...
Sampling alternative conformations is key to understanding how proteins work and engineering them fo...
An accurate potential function is essential to attack protein folding and structure prediction probl...
Molecular simulations are a valuable tool for studying biomolecular motions and thermodynamics. Howe...
Although the protein backbone is the most fundamental part of the structure, the fine-tuning of side...
ABSTRACT A major problem in predicting amino acid side-chain rearrangements following pointmutations...
Sampling alternative conformations is key to understanding how proteins work and engineering them fo...
Side chain optimization refers to the problem of repacking sidechain atoms on a fixed backbone so as...