In the V23E variant of staphylococcal nuclease, Glu-23 has a p<i>K</i><sub>a</sub> of 7.5. At low pH, Glu-23 is neutral and buried in the hydrophobic interior of the protein. Crystal structures and NMR spectroscopy experiments show that when Glu-23 becomes charged, the protein switches into an open state in which strands β1 and β2 separate from the β-barrel; the remaining structure is unaffected. In the open state the hydrophobic interior of the protein is exposed to bulk water, allowing Glu-23 to become hydrated. This illustrates several key aspects of protein electrostatics: (1) The apparent p<i>K</i><sub>a</sub> of an internal ionizable group can reflect the average of the very different p<i>K</i><sub>a</sub> values (open ≈4.5, closed ≫7...
The hydrophobic effect is a major driving force in protein folding. A complete understanding of this...
AbstractA glutamic acid was buried in the hydrophobic core of staphylococcal nuclease by replacement...
The ionization of internal groups in proteins can trigger conformational change. Despite this being ...
In the V23E variant of staphylococcal nuclease, Glu-23 has a p<i>K</i><sub>a</sub> of 7.5. At low pH...
In the V23E variant of staphylococcal nuclease, Glu-23 has a p<i>K</i><sub>a</sub> of 7.5. At low pH...
AbstractThe ionizable amino acid side chains of proteins are usually located at the surface. However...
Electrostatic energy links the structural properties of proteins with some of their important biolog...
The ionizable amino acid side chains of proteins are usually located at the surface. However, in som...
AbstractA glutamic acid was buried in the hydrophobic core of staphylococcal nuclease by replacement...
SummaryStructural consequences of ionization of residues buried in the hydrophobic interior of prote...
The extent to which proteins in the gas phase retain their condensed-phase structure is a hotly deba...
SummaryStructural consequences of ionization of residues buried in the hydrophobic interior of prote...
AbstractLys-66 and Glu-66, buried in the hydrophobic interior of staphylococcal nuclease by mutagene...
The screened Coulomb potential (SCP) method, combined with a quantitative description of the microen...
Charged residues on the surface of proteins are critical for both protein stability and interactions...
The hydrophobic effect is a major driving force in protein folding. A complete understanding of this...
AbstractA glutamic acid was buried in the hydrophobic core of staphylococcal nuclease by replacement...
The ionization of internal groups in proteins can trigger conformational change. Despite this being ...
In the V23E variant of staphylococcal nuclease, Glu-23 has a p<i>K</i><sub>a</sub> of 7.5. At low pH...
In the V23E variant of staphylococcal nuclease, Glu-23 has a p<i>K</i><sub>a</sub> of 7.5. At low pH...
AbstractThe ionizable amino acid side chains of proteins are usually located at the surface. However...
Electrostatic energy links the structural properties of proteins with some of their important biolog...
The ionizable amino acid side chains of proteins are usually located at the surface. However, in som...
AbstractA glutamic acid was buried in the hydrophobic core of staphylococcal nuclease by replacement...
SummaryStructural consequences of ionization of residues buried in the hydrophobic interior of prote...
The extent to which proteins in the gas phase retain their condensed-phase structure is a hotly deba...
SummaryStructural consequences of ionization of residues buried in the hydrophobic interior of prote...
AbstractLys-66 and Glu-66, buried in the hydrophobic interior of staphylococcal nuclease by mutagene...
The screened Coulomb potential (SCP) method, combined with a quantitative description of the microen...
Charged residues on the surface of proteins are critical for both protein stability and interactions...
The hydrophobic effect is a major driving force in protein folding. A complete understanding of this...
AbstractA glutamic acid was buried in the hydrophobic core of staphylococcal nuclease by replacement...
The ionization of internal groups in proteins can trigger conformational change. Despite this being ...