Motivation: Hydrogen bonds are one of the most important inter-atomic interactions in biology. Previous experimental, theoretical and bioinformatics analyses have shown that the hydrogen bonding potential of amino acids is generally satisfied and that buried unsatisfied hydrogen-bond-capable residues are destabilizing. When studying mutant proteins, or introducing mutations to residues involved in hydrogen bonding, one needs to know whether a hydrogen bond can be maintained. Our aim, therefore, was to develop a rapid method to evaluate whether a sidechain can form a hydrogen-bond. Results: A novel knowledge-based approach was developed in which the conformations accessible to the residues involved are taken into account. Residues involved ...
The intricate functions of membrane proteins would not be possible without bends or breaks that are ...
Hydrogen bonds are directional, non-covalent interactions between hydrogen and electronegative atoms...
We study the dynamic propensity of the backbone hydrogen bonds of the protein MDM2 (the natural regu...
ABSTRACT The contribution of a specific hydrogen bond in apoflavodoxin to protein stability is inves...
AbstractThe contribution of a specific hydrogen bond in apoflavodoxin to protein stability is invest...
Proteins are made of vast chains of amino acids that twist and fold into intricate designs. These st...
Hydrogen bonds are one of the dominant forms of atomic interaction within proteins and are studied e...
Backbone hydrogen bonds are important for the structure and stability of proteins. However, since co...
Backbone hydrogen bonds are important for the structure and stability of proteins. However, since co...
Hydrogen bond networks play a critical role in determining the stability and specificity of biomolec...
Backbone hydrogen bonds are important for the structure and stability of proteins. However, since co...
Although polar amino acids tend to be found on the surface of proteins due to their hydrophilic natu...
We study the dynamic propensity of the backbone hydrogen bonds of the protein MDM2 (the natural regu...
It is clear that intramolecular hydrogen bonds are essential to the structure and stability of globu...
Quantification of backbone hydrogen bond energies in protein folding has remained elusive despite ex...
The intricate functions of membrane proteins would not be possible without bends or breaks that are ...
Hydrogen bonds are directional, non-covalent interactions between hydrogen and electronegative atoms...
We study the dynamic propensity of the backbone hydrogen bonds of the protein MDM2 (the natural regu...
ABSTRACT The contribution of a specific hydrogen bond in apoflavodoxin to protein stability is inves...
AbstractThe contribution of a specific hydrogen bond in apoflavodoxin to protein stability is invest...
Proteins are made of vast chains of amino acids that twist and fold into intricate designs. These st...
Hydrogen bonds are one of the dominant forms of atomic interaction within proteins and are studied e...
Backbone hydrogen bonds are important for the structure and stability of proteins. However, since co...
Backbone hydrogen bonds are important for the structure and stability of proteins. However, since co...
Hydrogen bond networks play a critical role in determining the stability and specificity of biomolec...
Backbone hydrogen bonds are important for the structure and stability of proteins. However, since co...
Although polar amino acids tend to be found on the surface of proteins due to their hydrophilic natu...
We study the dynamic propensity of the backbone hydrogen bonds of the protein MDM2 (the natural regu...
It is clear that intramolecular hydrogen bonds are essential to the structure and stability of globu...
Quantification of backbone hydrogen bond energies in protein folding has remained elusive despite ex...
The intricate functions of membrane proteins would not be possible without bends or breaks that are ...
Hydrogen bonds are directional, non-covalent interactions between hydrogen and electronegative atoms...
We study the dynamic propensity of the backbone hydrogen bonds of the protein MDM2 (the natural regu...