We develop a dynamic optimization technique for determining optimum folding pathways of proteins starting from different initial configurations. A coarse-grained Go model is used. Forces acting on each bead are (i) the friction force, (ii) forces from bond length constraints, (iii) excluded volume constraints, and (iv) attractive forces between residue pairs that are in contact in the native state. An objective function is defined as the total attractive energy between nonbonded residues, which are neighbors in the native state. The objective function is minimized over all feasible paths, satisfying bond length and excluded volume constraints. The optimization problem is nonconvex and contains a large number of constraints. An augmented Lag...
This research shows optimization approaches to protein folding. The protein folding problem is to pr...
It has been proposed that proteins fold by a process called "Zipping and Assembly" (Z&A). Zi...
Molecular dynamics (MD) simulations can now predict ms-timescale folding processes of small proteins...
A new method to develop low-energy folding routes for proteins is presented. The novel aspect of the...
An optimization model is introduced in which proteins try to evade high energy regions of the foldin...
A new method to develop low-energy folding routes for proteins is presented. The novel aspect of the...
A new method to develop low-energy folding routes for proteins is presented. The novel aspect of the...
Although protein folding has been studied for decades many open issues still resist, and we yet lack...
During evolution, the effective interactions between residues in a protein can be adjusted through m...
Proteins are known to fold into tertiary structures that determine their functionality in living org...
We currently have a great deal of experimental data about how particular proteins fold, but no descr...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
The notion of optimization is inherent in protein design. A long linear chain of twenty types of ami...
Under appropriate physiological conditions, proteins fold into their biologically active native conf...
AbstractThe folding pathways and the kinetic properties for three different types of off-lattice fou...
This research shows optimization approaches to protein folding. The protein folding problem is to pr...
It has been proposed that proteins fold by a process called "Zipping and Assembly" (Z&A). Zi...
Molecular dynamics (MD) simulations can now predict ms-timescale folding processes of small proteins...
A new method to develop low-energy folding routes for proteins is presented. The novel aspect of the...
An optimization model is introduced in which proteins try to evade high energy regions of the foldin...
A new method to develop low-energy folding routes for proteins is presented. The novel aspect of the...
A new method to develop low-energy folding routes for proteins is presented. The novel aspect of the...
Although protein folding has been studied for decades many open issues still resist, and we yet lack...
During evolution, the effective interactions between residues in a protein can be adjusted through m...
Proteins are known to fold into tertiary structures that determine their functionality in living org...
We currently have a great deal of experimental data about how particular proteins fold, but no descr...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
The notion of optimization is inherent in protein design. A long linear chain of twenty types of ami...
Under appropriate physiological conditions, proteins fold into their biologically active native conf...
AbstractThe folding pathways and the kinetic properties for three different types of off-lattice fou...
This research shows optimization approaches to protein folding. The protein folding problem is to pr...
It has been proposed that proteins fold by a process called "Zipping and Assembly" (Z&A). Zi...
Molecular dynamics (MD) simulations can now predict ms-timescale folding processes of small proteins...