AbstractThe contribution of a specific hydrogen bond in apoflavodoxin to protein stability is investigated by combining theory, experiment and simulation. Although hydrogen bonds are major determinants of protein structure and function, their contribution to protein stability is still unclear and widely debated. The best method so far devised to estimate the contribution of side-chain interactions to protein stability is double mutant cycle analysis, but the interaction energies so derived are not identical to incremental binding energies (the energies quantifying net contributions of two interacting groups to protein stability). Here we introduce double-deletion analysis of ‘isolated’ residue pairs as a means to precisely quantify incremen...
Hydrogen bonds (H-bonds) play a key role in both the formation and stabilization of protein structur...
The energetic contributions of hydrogen bonding to protein folding are still unclear, despite over 7...
AbstractA few backbone hydrogen bonds (HBs) in native protein folds are poorly protected from water ...
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...
A double-deletion method to quantifying incremental binding energies in proteins from experiment. Ex...
Motivation: Hydrogen bonds are one of the most important inter-atomic interactions in biology. Previ...
AbstractThe goal of this article is to summarize what has been learned about the major forces stabil...
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...
Abstract: Ab initio calculations up to the MP2/aug-cc-pVQZ//MP2/6-311+G* * level have been carried o...
Protein structures are stabilized by multiple weak interactions, including the hydrophobic effect, h...
The prediction of binding sites and the understanding of interfaces associated with protein complexa...
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 (H-bonds) play a key role in both the formation and stabilization of protein structur...
The energetic contributions of hydrogen bonding to protein folding are still unclear, despite over 7...
AbstractA few backbone hydrogen bonds (HBs) in native protein folds are poorly protected from water ...
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...
A double-deletion method to quantifying incremental binding energies in proteins from experiment. Ex...
Motivation: Hydrogen bonds are one of the most important inter-atomic interactions in biology. Previ...
AbstractThe goal of this article is to summarize what has been learned about the major forces stabil...
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...
Abstract: Ab initio calculations up to the MP2/aug-cc-pVQZ//MP2/6-311+G* * level have been carried o...
Protein structures are stabilized by multiple weak interactions, including the hydrophobic effect, h...
The prediction of binding sites and the understanding of interfaces associated with protein complexa...
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 (H-bonds) play a key role in both the formation and stabilization of protein structur...
The energetic contributions of hydrogen bonding to protein folding are still unclear, despite over 7...
AbstractA few backbone hydrogen bonds (HBs) in native protein folds are poorly protected from water ...