A static analysis of bovine pancreatic trypsin inhibitor (BPTI) is presented based on a new discrete/continuum approach to modeling the dynamics of biomolecules. This hybrid method utilizes knowledge of the intramolecular potential and molecular configuration to generate a field of elastic modulus tensors. These tensors, which relate the local stress and strain for each atom in the biomolecule, can be used to judge the local rigidity as well as indicate regions of high stress. Comparing the tensor fields for an unrelaxed and a relaxed configuration, the microscopic structure of BPTI is found to be anisotropic and to have regions of stress even when it is relaxed in the potential field. However, when these fields are averaged over the whole ...
Proteins are dynamic molecules involved in virtually every chemical process in our bodies. Understan...
Elastic and quasielastic neutron scattering experiments on complex systems are often difficult to in...
All living organisms utilize thousands of molecular building blocks to perform mechanical tasks. The...
A static analysis of bovine pancreatic trypsin inhibitor (BPTI) is presented based on a new discrete...
AbstractMolecular dynamics simulations of bovine pancreatic trypsin inhibitor in water have been per...
To isolate the effects of the inclusion of polarizability in the force field model on the structure ...
Chapter 1 deals with computational methods used in this thesis. Firstly, the MD simulation method a...
AbstractFolded proteins may be regarded as soft active matter under physiological conditions. The de...
Folded proteins may be regarded as soft active matter under physiological conditions. The densely pa...
Theoretical approaches to the internal dynamics of proteins are outlined and illustrated by applicat...
Biological functions of macromolecules and their assemblages play critical roles in a living cell. C...
Biological function relies on the fact that biomolecules can switch between different conformations ...
Biological function relies on the fact that biomolecules can switch between different conformations ...
Conformational dynamics are central for understanding biomolecular structure and function, since bio...
Atomistic simulations can not achieve the time and length scales of many important biological proble...
Proteins are dynamic molecules involved in virtually every chemical process in our bodies. Understan...
Elastic and quasielastic neutron scattering experiments on complex systems are often difficult to in...
All living organisms utilize thousands of molecular building blocks to perform mechanical tasks. The...
A static analysis of bovine pancreatic trypsin inhibitor (BPTI) is presented based on a new discrete...
AbstractMolecular dynamics simulations of bovine pancreatic trypsin inhibitor in water have been per...
To isolate the effects of the inclusion of polarizability in the force field model on the structure ...
Chapter 1 deals with computational methods used in this thesis. Firstly, the MD simulation method a...
AbstractFolded proteins may be regarded as soft active matter under physiological conditions. The de...
Folded proteins may be regarded as soft active matter under physiological conditions. The densely pa...
Theoretical approaches to the internal dynamics of proteins are outlined and illustrated by applicat...
Biological functions of macromolecules and their assemblages play critical roles in a living cell. C...
Biological function relies on the fact that biomolecules can switch between different conformations ...
Biological function relies on the fact that biomolecules can switch between different conformations ...
Conformational dynamics are central for understanding biomolecular structure and function, since bio...
Atomistic simulations can not achieve the time and length scales of many important biological proble...
Proteins are dynamic molecules involved in virtually every chemical process in our bodies. Understan...
Elastic and quasielastic neutron scattering experiments on complex systems are often difficult to in...
All living organisms utilize thousands of molecular building blocks to perform mechanical tasks. The...