As a result of the regular arrangement of peptide dipoles in secondary structure segments and the low effective dielectric constant in Hydrophobic cores, the electrostatic energy of a protein is very sensitive to the relative orientation of the segments. We provide here evidence that the alignment of secondary structure dipoles is significant in determining the three-dimensional structure of globular proteins
The presence of highly regular secondary structure motifs in protein structure is a fascinating area...
93-100The position independent dipole membrane proteins need to be oriented in the membrane in orde...
194-202TIM proteins of ⍺/β barrel fold from ⍺/β class as given in SCOP database were taken for dipol...
As a result of the regular arrangement of peptide dipoles in secondary structure segments and the lo...
As a result of the regular arrangement of peptide dipoles in secondary structure segments and the lo...
ABSTRACT: We present a generic solvated coarse-grained protein model that can be used to characteriz...
Electrostatic interactions between the peptide dipoles in α-helices and in parallel β-strands have b...
Proteins fold into unique three-dimensional structures by specific, orientation-dependent interactio...
The tertiary structure and folding of proteins are interpreted in terms of the amino acid sequence. ...
Folding type-specific secondary structure propensities of 20 naturally occurring amino acids have be...
SummaryAligned α helix peptide dipoles sum to a “macroscopic” dipole parallel to the helix axis that...
The ground state electronic energy represents a complicated function of the nuclear coordinates. Eve...
Stabilization centers (SCs) were shown to play an important role in preventing decay of three-dimens...
Secondary structures such as alpha-helix and beta-sheet are the major structural motifs within the t...
The presence of highly regular secondary structure motifs in protein structure is a fascinating area...
The presence of highly regular secondary structure motifs in protein structure is a fascinating area...
93-100The position independent dipole membrane proteins need to be oriented in the membrane in orde...
194-202TIM proteins of ⍺/β barrel fold from ⍺/β class as given in SCOP database were taken for dipol...
As a result of the regular arrangement of peptide dipoles in secondary structure segments and the lo...
As a result of the regular arrangement of peptide dipoles in secondary structure segments and the lo...
ABSTRACT: We present a generic solvated coarse-grained protein model that can be used to characteriz...
Electrostatic interactions between the peptide dipoles in α-helices and in parallel β-strands have b...
Proteins fold into unique three-dimensional structures by specific, orientation-dependent interactio...
The tertiary structure and folding of proteins are interpreted in terms of the amino acid sequence. ...
Folding type-specific secondary structure propensities of 20 naturally occurring amino acids have be...
SummaryAligned α helix peptide dipoles sum to a “macroscopic” dipole parallel to the helix axis that...
The ground state electronic energy represents a complicated function of the nuclear coordinates. Eve...
Stabilization centers (SCs) were shown to play an important role in preventing decay of three-dimens...
Secondary structures such as alpha-helix and beta-sheet are the major structural motifs within the t...
The presence of highly regular secondary structure motifs in protein structure is a fascinating area...
The presence of highly regular secondary structure motifs in protein structure is a fascinating area...
93-100The position independent dipole membrane proteins need to be oriented in the membrane in orde...
194-202TIM proteins of ⍺/β barrel fold from ⍺/β class as given in SCOP database were taken for dipol...