Modification and optimization of the united-residue (UNRES) potential energy function for canonical simulations. I. Temperature dependence of the effective energy …

A Liwo, M Khalili, C Czaplewski… - The Journal of …, 2007 - ACS Publications
We report the modification and parametrization of the united-residue (UNRES) force field for
energy-based protein structure prediction and protein folding simulations. We tested the …

[引用][C] Modification and Optimization of the United-Residue (UNRES) Potential Energy Function for Canonical Simulations. I. Temperature Dependence of the Effective …

A Liwo, M Khalili, C Czaplewski, S Kalinowski… - The Journal of Physical …, 2007 - infona.pl
Modification and Optimization of the United-Residue (UNRES) Potential Energy Function for
Canonical Simulations. I. Temperature Dependence of the Effective Energy Function and Tests …

Modification and optimization of the united-residue (UNRES) potential energy function for canonical simulations. I. Temperature dependence of the effective energy …

JA Liwo, M Khalili, C Czaplewski… - Journal of …, 2007 - repozytorium.bg.ug.edu.pl
We report the modification and parametrization of the united-residue (UNRES) force field for
energy-based protein structure prediction and protein folding simulations. We tested the …

[引用][C] Modification and Optimization of the United-Residue (UNRES) Potential Energy Function for Canonical Simulations. I. Temperature Dependence of the Effective …

A Liwo, M Khalili, C Czaplewski… - JOURNAL OF …, 2007 - mostwiedzy.pl
Modification and Optimization of the United-Residue (UNRES) Potential Energy Function for
Canonical Simulations. I. Temperature Dependence of the Effective Energy Function and Tests …

Modification and optimization of the united-residue (UNRES) potential energy function for canonical simulations. I. Temperature dependence of the effective energy …

A Liwo, M Khalili, C Czaplewski… - The Journal of …, 2007 - europepmc.org
We report the modification and parameterization of the united-residue (UNRES) force field
for energy-based protein-structure prediction and protein-folding simulations. We tested the …

[PDF][PDF] Modification and optimization of the united-residue (UNRES) potential-energy function for canonical simulations. I. Temperature dependence of the effective …

A Liwo, M Khalili, C Czaplewski, S Kalinowski… - J Phys Chem …, 2007 - academia.edu
We report the modification and parameterization of the united-residue (UNRES) force field
for energy-based protein-structure prediction and protein-folding simulations. We tested the …

[HTML][HTML] Modification and optimization of the united-residue (UNRES) potential-energy function for canonical simulations. I. Temperature dependence of the effective …

A Liwo, M Khalili, C Czaplewski… - The journal of …, 2007 - ncbi.nlm.nih.gov
We report the modification and parameterization of the united-residue (UNRES) force field
for energy-based protein-structure prediction and protein-folding simulations. We tested the …

Modification and optimization of the united-residue (UNRES) potential energy function for canonical simulations. I. Temperature dependence of the effective energy …

A Liwo, M Khalili, C Czaplewski… - The journal of …, 2007 - pubmed.ncbi.nlm.nih.gov
We report the modification and parametrization of the united-residue (UNRES) force field for
energy-based protein structure prediction and protein folding simulations. We tested the …

Modification and optimization of the united-residue (UNRES) potential energy function for canonical simulations. I. Temperature dependence of the effective energy …

A Liwo, M Khalili, C Czaplewski… - The Journal of …, 2007 - europepmc.org
We report the modification and parameterization of the united-residue (UNRES) force field
for energy-based protein-structure prediction and protein-folding simulations. We tested the …

[引用][C] Modification and optimization of the united-residue (UNRES) potential energy function for canonical simulations. I. temperature dependence of the effective …

A LIWO, M KHALILI… - The Journal of …, 2007 - American Chemical Society