A multiscale simulation method of protein folding is proposed, using atomic representation of protein and solvent, combing genetic algorithms to determine the key protein structures from a global view, with molecular dynamic simulations to reveal the local folding pathways, thus providing an integrated landscape of protein folding. The method is found to be superior to previously investigated global search algorithms or dynamic simulations alone. For secondary structure formation of a selected peptide, RN24, the structures and dynamics produced by this method agree well with corresponding experimental results. Three most populated conformations are observed, including hairpin, -sheet and -helix. The energetic barriers separating these three...
Assuming that the protein primary sequence contains all information required to fold a protei...
Peptides often have conformational preferences. We simulated 133 peptide 8-mer fragments from six di...
Proteins are known to fold into tertiary structures that determine their functionality in living org...
The investigation of protein folding and its ramifications in biological contexts is at the heart of...
The successful deciphering of the human genome has highlighted an old challenge in protein science: ...
Sequence-based models for protein folding are developed and tested on peptides with both alpha- and ...
The investigation of protein folding and its ramifications in biological contexts is at the heart o...
The protein folding problem is a fundamental problem in computational molecular biology and biochemi...
The investigation of protein folding and its ramifications in biological contexts is at the heart o...
Proteins are the most complicated molecules that exist in nature. Since protein structures are close...
A diffusion theory-based, all-physical ab initio protein folding simulation is described and applied...
An outstanding challenge in the field of molecular biology has been to understand the process by whi...
Monte Carlo simulated annealing and generalized-ensemble algorithms for protein fold-ing problem are...
The ultimate goal of the present work is to predict protein tertiary structures solely from the amin...
Computer simulations of biological systems provide novel data while both supporting and challenging ...
Assuming that the protein primary sequence contains all information required to fold a protei...
Peptides often have conformational preferences. We simulated 133 peptide 8-mer fragments from six di...
Proteins are known to fold into tertiary structures that determine their functionality in living org...
The investigation of protein folding and its ramifications in biological contexts is at the heart of...
The successful deciphering of the human genome has highlighted an old challenge in protein science: ...
Sequence-based models for protein folding are developed and tested on peptides with both alpha- and ...
The investigation of protein folding and its ramifications in biological contexts is at the heart o...
The protein folding problem is a fundamental problem in computational molecular biology and biochemi...
The investigation of protein folding and its ramifications in biological contexts is at the heart o...
Proteins are the most complicated molecules that exist in nature. Since protein structures are close...
A diffusion theory-based, all-physical ab initio protein folding simulation is described and applied...
An outstanding challenge in the field of molecular biology has been to understand the process by whi...
Monte Carlo simulated annealing and generalized-ensemble algorithms for protein fold-ing problem are...
The ultimate goal of the present work is to predict protein tertiary structures solely from the amin...
Computer simulations of biological systems provide novel data while both supporting and challenging ...
Assuming that the protein primary sequence contains all information required to fold a protei...
Peptides often have conformational preferences. We simulated 133 peptide 8-mer fragments from six di...
Proteins are known to fold into tertiary structures that determine their functionality in living org...