AbstractThis study shows that intramolecular hydrogen bonding in proteins depends on the accessibility of donors and acceptors to water molecules. The frequency of occurrence of H-bonded side chains in proteins is inversely proportional to the solvent accessibility of their donors and acceptors. Estimates of the notional free energy of hydrogen bonding suggest that intramolecular hydrogen-bonding interactions of buried and half-buried donors and acceptors can contribute favorably to the stability of a protein, whereas those of solvent-exposed polar atoms become less favorable or unfavorable
Protein structures are stabilized by multiple weak interactions, including the hydrophobic effect, h...
Protein structures are stabilized by multiple weak interactions, including the hydrophobic effect, h...
Hydrogen bonds (HBs) play an essential role in the structure and catalytic action of enzymes, but a ...
AbstractThis study shows that intramolecular hydrogen bonding in proteins depends on the accessibili...
It is clear that intramolecular hydrogen bonds are essential to the structure and stability of globu...
The prediction of binding sites and the understanding of interfaces associated with protein complexa...
Using detailed hydrogen bonding, surface exposure, internal environment, and solvent interaction cal...
The energetic contributions of hydrogen bonding to protein folding are still unclear, despite over 7...
Hydrogen bonds are one of the dominant forms of atomic interaction within proteins and are studied e...
Hydrogen bonds profoundly influence the architecture and activity of biological macromolecules. Deep...
Hydrogen bonds profoundly influence the architecture and activity of biological macromolecules. Deep...
AbstractProgressive structuring and ultimately exclusion of water by hydrophobes surrounding backbon...
It is clear that intramolecular hydrogen bonds are essential to the structure and stability of globu...
AbstractThe goal of this article is to summarize what has been learned about the major forces stabil...
AbstractIt is now well admitted that hydrophobic interactions and hydrogen bonds are the main forces...
Protein structures are stabilized by multiple weak interactions, including the hydrophobic effect, h...
Protein structures are stabilized by multiple weak interactions, including the hydrophobic effect, h...
Hydrogen bonds (HBs) play an essential role in the structure and catalytic action of enzymes, but a ...
AbstractThis study shows that intramolecular hydrogen bonding in proteins depends on the accessibili...
It is clear that intramolecular hydrogen bonds are essential to the structure and stability of globu...
The prediction of binding sites and the understanding of interfaces associated with protein complexa...
Using detailed hydrogen bonding, surface exposure, internal environment, and solvent interaction cal...
The energetic contributions of hydrogen bonding to protein folding are still unclear, despite over 7...
Hydrogen bonds are one of the dominant forms of atomic interaction within proteins and are studied e...
Hydrogen bonds profoundly influence the architecture and activity of biological macromolecules. Deep...
Hydrogen bonds profoundly influence the architecture and activity of biological macromolecules. Deep...
AbstractProgressive structuring and ultimately exclusion of water by hydrophobes surrounding backbon...
It is clear that intramolecular hydrogen bonds are essential to the structure and stability of globu...
AbstractThe goal of this article is to summarize what has been learned about the major forces stabil...
AbstractIt is now well admitted that hydrophobic interactions and hydrogen bonds are the main forces...
Protein structures are stabilized by multiple weak interactions, including the hydrophobic effect, h...
Protein structures are stabilized by multiple weak interactions, including the hydrophobic effect, h...
Hydrogen bonds (HBs) play an essential role in the structure and catalytic action of enzymes, but a ...