We present a simple method for analyzing the geometry of noncovalent residue-residue interactions stabilizing the protein structure, which takes into account the constraints on the local backbone geometry. We find that the principal geometrical constraints are amino acid aspecific and are associated with hydrogen bond formation in helices and sheets. In contrast, amino acid residues in nonhelical and nonextended conformations, which make noncovalent interactions stabilizing the protein tertiary structure, display greater flexibility. We apply the method to an analysis of the packing of helices in helical bundle proteins requiring an efficient packing of amino acid side-chains of the interacting helice
Simple models with a single bead representation (Cα models) have been successful in providing a qual...
AbstractWe present a brief summary of the key factors underlying protein structure, as developed in ...
ABSTRACT The possible occurrence of a novel helix terminating structuralmotif in proteins involv-ing...
We present a simple method for analyzing the geometry of noncovalent residue–residue interactions st...
Although hydrophobic interaction is the main contributing factor to the stability of the protein fol...
SummaryWe identify a structural feature of transmembrane helical proteins that restricts their confo...
The geometry of interactions of planar residues is nonrandom in protein tertiary structures and give...
We review recent work on modelling helical parts of protein structure mathematically. We use classic...
Understanding the key factors that influence the interaction preferences of amino acids in the foldi...
SummaryProtein structure determination and predictive modeling have long been guided by the paradigm...
A conceptual framework for understanding the protein folding problem has remained elusive in spite o...
Recent studies suggest that protein folding should be revisited as the emergent property of a comple...
The protein structure is a cumulative result of interactions between amino acid residues interacting...
Proteins frequently assume complex three-dimensional structures characterized by marginal thermodyna...
Determining the factors in protein stability and identifying how amino acid types contribute to the ...
Simple models with a single bead representation (Cα models) have been successful in providing a qual...
AbstractWe present a brief summary of the key factors underlying protein structure, as developed in ...
ABSTRACT The possible occurrence of a novel helix terminating structuralmotif in proteins involv-ing...
We present a simple method for analyzing the geometry of noncovalent residue–residue interactions st...
Although hydrophobic interaction is the main contributing factor to the stability of the protein fol...
SummaryWe identify a structural feature of transmembrane helical proteins that restricts their confo...
The geometry of interactions of planar residues is nonrandom in protein tertiary structures and give...
We review recent work on modelling helical parts of protein structure mathematically. We use classic...
Understanding the key factors that influence the interaction preferences of amino acids in the foldi...
SummaryProtein structure determination and predictive modeling have long been guided by the paradigm...
A conceptual framework for understanding the protein folding problem has remained elusive in spite o...
Recent studies suggest that protein folding should be revisited as the emergent property of a comple...
The protein structure is a cumulative result of interactions between amino acid residues interacting...
Proteins frequently assume complex three-dimensional structures characterized by marginal thermodyna...
Determining the factors in protein stability and identifying how amino acid types contribute to the ...
Simple models with a single bead representation (Cα models) have been successful in providing a qual...
AbstractWe present a brief summary of the key factors underlying protein structure, as developed in ...
ABSTRACT The possible occurrence of a novel helix terminating structuralmotif in proteins involv-ing...