Water, often termed as the �lubricant of life,� is expected to play an active role in navigating protein dissociation�association reactions. In order to unearth the molecular details, we first compute the free-energy surface (FES) of insulin dimer dissociation employing metadynamics simulation, and then carry out analyses of insulin dimerization and dissociation using atomistic molecular-dynamics simulation in explicit water. We select two sets of initial configurations from 1) the dissociated state and 2) the transition state, and follow time evolution using several long trajectories (�1�2 μs). During the process we not only monitor configuration of protein monomers, but also the properties of water. Although the equilibrium str...
Molecular dynamics simulation indicates that the dynamical behaviour of the insulin dimer is asymmet...
Insulin dimerization and aggregation play important roles in the endogenous deliv- ery of the hormon...
Understanding the intermolecular forces and dynamics of insulin self-assembly is crucial for devisin...
The dissociation of an insulin dimer to two monomers is an important life process. Although the mono...
The dissociation of an insulin dimer to two monomers is an important life process. Although the mono...
Insulin-dimer dissociation is an essential biochemical process required for the activity of the horm...
In addition to the biologically active monomer of the protein insulin circulating in human blood, th...
In addition to the biologically active monomer of the protein insulin circulating in human blood, th...
In addition to the biologically active monomer of the protein insulin circulating in human blood, th...
Association and dissociation of proteins are fundamental processes in nature. Although simple to und...
Association and dissociation of proteins are fundamental processes in nature. Although simple to und...
We calculate the rate of dissociation of an insulin dimer into two monomers in water. The rate of th...
Molecular dynamics simulation indicates that the dynamical behaviour of the insulin dimer is asymmet...
Molecular dynamics simulation indicates that the dynamical behaviour of the insulin dimer is asymmet...
Molecular dynamics simulation indicates that the dynamical behaviour of the insulin dimer is asymmet...
Molecular dynamics simulation indicates that the dynamical behaviour of the insulin dimer is asymmet...
Insulin dimerization and aggregation play important roles in the endogenous deliv- ery of the hormon...
Understanding the intermolecular forces and dynamics of insulin self-assembly is crucial for devisin...
The dissociation of an insulin dimer to two monomers is an important life process. Although the mono...
The dissociation of an insulin dimer to two monomers is an important life process. Although the mono...
Insulin-dimer dissociation is an essential biochemical process required for the activity of the horm...
In addition to the biologically active monomer of the protein insulin circulating in human blood, th...
In addition to the biologically active monomer of the protein insulin circulating in human blood, th...
In addition to the biologically active monomer of the protein insulin circulating in human blood, th...
Association and dissociation of proteins are fundamental processes in nature. Although simple to und...
Association and dissociation of proteins are fundamental processes in nature. Although simple to und...
We calculate the rate of dissociation of an insulin dimer into two monomers in water. The rate of th...
Molecular dynamics simulation indicates that the dynamical behaviour of the insulin dimer is asymmet...
Molecular dynamics simulation indicates that the dynamical behaviour of the insulin dimer is asymmet...
Molecular dynamics simulation indicates that the dynamical behaviour of the insulin dimer is asymmet...
Molecular dynamics simulation indicates that the dynamical behaviour of the insulin dimer is asymmet...
Insulin dimerization and aggregation play important roles in the endogenous deliv- ery of the hormon...
Understanding the intermolecular forces and dynamics of insulin self-assembly is crucial for devisin...