Recent studies have revealed the key role of natively unfolded proteins in many important biological processes. In order to study the conformational changes of these proteins, a one-bead-per-amino-acid coarse grained (CG) model is developed, and a method is proposed to extract the potential functions for the local interactions between CG beads. Experimentally obtained Ramachandran data for the coil regions of proteins are converted into distributions of pseudo-bond and pseudo-dihedral angles between neighboring alpha-carbons in the polypeptide chain. These are then used to derive bending and torsion potentials, which are residue and sequence specific. The validity of the developed model is testified by studying the radius of gyration as wel...
For 238 mutations of residues totally or partially buried in the protein core, we estimate the foldi...
[[abstract]]A coarse-grained off-lattice model that is not biased in any way to the native state is ...
ABSTRACT: Many commonly used coarse-grained models for proteins are based on simplified interaction ...
Recent studies have revealed the key role of natively unfolded proteins in many important biological...
We outline a general strategy for determining the effective coarse-grained interactions between the ...
The ability of proteins to fold into well-defined structures forms the basis of a wide variety of bi...
Abstract. Simulations of protein dynamics may work on different levels of mole-cular detail. The lev...
Many biological cellular processes occur at the micro- or millisecond time scale. With traditional a...
We study a coarse-grained protein model whose primary characteristics are (i) a tubelike geometry to...
Protein folding involves the transformation of an amino acid chain to a unique 3D structure. The con...
ABSTRACT: We present a generic solvated coarse-grained protein model that can be used to characteriz...
Coarse-grained approaches to study the protein folding process provide the possibility to explore ti...
A formidable challenge in molecular biology is the prediction of the three-dimensional structures of...
Fluctuations of protein three-dimensional structures and large-scale conformational transitions are ...
Protein machines are clusters of protein assemblies that function in order to control the transfer o...
For 238 mutations of residues totally or partially buried in the protein core, we estimate the foldi...
[[abstract]]A coarse-grained off-lattice model that is not biased in any way to the native state is ...
ABSTRACT: Many commonly used coarse-grained models for proteins are based on simplified interaction ...
Recent studies have revealed the key role of natively unfolded proteins in many important biological...
We outline a general strategy for determining the effective coarse-grained interactions between the ...
The ability of proteins to fold into well-defined structures forms the basis of a wide variety of bi...
Abstract. Simulations of protein dynamics may work on different levels of mole-cular detail. The lev...
Many biological cellular processes occur at the micro- or millisecond time scale. With traditional a...
We study a coarse-grained protein model whose primary characteristics are (i) a tubelike geometry to...
Protein folding involves the transformation of an amino acid chain to a unique 3D structure. The con...
ABSTRACT: We present a generic solvated coarse-grained protein model that can be used to characteriz...
Coarse-grained approaches to study the protein folding process provide the possibility to explore ti...
A formidable challenge in molecular biology is the prediction of the three-dimensional structures of...
Fluctuations of protein three-dimensional structures and large-scale conformational transitions are ...
Protein machines are clusters of protein assemblies that function in order to control the transfer o...
For 238 mutations of residues totally or partially buried in the protein core, we estimate the foldi...
[[abstract]]A coarse-grained off-lattice model that is not biased in any way to the native state is ...
ABSTRACT: Many commonly used coarse-grained models for proteins are based on simplified interaction ...