Protein conformational change is of central importance in molecular biology. Here we demonstrate a computational approach to characterize the transition between two metastable conformations in all-atom simulations. Our approach is based on the finite temperature string method, and the implementation is essentially a generalization of umbrella sampling simulations with Hamiltonian replica exchange. We represent the transition pathway by a curve in the conformational space, with the curve parameter taken as the reaction coordinate. Our approach can efficiently refine a transition pathway and compute a one-dimensional free energy as a function of the reaction coordinate. A diffusion model can then be used to calculate the forward and backward ...
Computational treatments of protein conformational changes tend to focus on the trajectories themsel...
abstract: In a typical living cell, millions to billions of proteins—nanomachines that fluctuate and...
To understand functions of biomolecules such as proteins, not only structures but their conformation...
Motivation: A new algorithm to trace conformational transitions in proteins is presented. The method...
Parallel tempering (PT) molecular dynamics simulations have been extensively investigated as a means...
By suitably extending a recent approach [G. Bussi et al, J Am Chem Soc 2006, 128, 13435] we introduc...
AbstractUsing distributed molecular dynamics simulations we located four distinct folding transition...
Computer simulations for investigating protein folding and evolution are presented. In chapter 1, an...
Calculating the kinetics of conformational changes in macromolecules, such as proteins and nucleic a...
This thesis is focused on developing advanced path sampling simulation methods to study protein fold...
Computer simulation provides an increasingly realistic picture of large-scale conformational change ...
Computational methods are used for the study of conformational change in biological molecules. Conve...
Study of complex activated molecular transitions by molecular dynamics (MD) simulation can be a daun...
Understanding the kinetic behavior of complex systems is crucial for the study of physical, chemical...
Molecular dynamics are increasingly used to construct conformational ensembles of biochemical system...
Computational treatments of protein conformational changes tend to focus on the trajectories themsel...
abstract: In a typical living cell, millions to billions of proteins—nanomachines that fluctuate and...
To understand functions of biomolecules such as proteins, not only structures but their conformation...
Motivation: A new algorithm to trace conformational transitions in proteins is presented. The method...
Parallel tempering (PT) molecular dynamics simulations have been extensively investigated as a means...
By suitably extending a recent approach [G. Bussi et al, J Am Chem Soc 2006, 128, 13435] we introduc...
AbstractUsing distributed molecular dynamics simulations we located four distinct folding transition...
Computer simulations for investigating protein folding and evolution are presented. In chapter 1, an...
Calculating the kinetics of conformational changes in macromolecules, such as proteins and nucleic a...
This thesis is focused on developing advanced path sampling simulation methods to study protein fold...
Computer simulation provides an increasingly realistic picture of large-scale conformational change ...
Computational methods are used for the study of conformational change in biological molecules. Conve...
Study of complex activated molecular transitions by molecular dynamics (MD) simulation can be a daun...
Understanding the kinetic behavior of complex systems is crucial for the study of physical, chemical...
Molecular dynamics are increasingly used to construct conformational ensembles of biochemical system...
Computational treatments of protein conformational changes tend to focus on the trajectories themsel...
abstract: In a typical living cell, millions to billions of proteins—nanomachines that fluctuate and...
To understand functions of biomolecules such as proteins, not only structures but their conformation...