Formation of a water-expelling nonpolar core is the paradigm of protein folding and stability. Although experiment largely confirms this picture, water buried in "hydrophobic" cavities is required for the function of some proteins. Hydration of the protein core has also been suggested as the mechanism of pressure-induced unfolding. We therefore are led to ask whether even the most nonpolar protein core is truly hydrophobic (i.e., water-repelling). To answer this question we probed the hydration of an approximately 160-A(3), highly hydrophobic cavity created by mutation in T4 lysozyme by using high-pressure crystallography and molecular dynamics simulation. We show that application of modest pressure causes approximately four water molecules...
AbstractMolecular dynamics simulations of Staphylococcal nuclease and of 10 variants with internal p...
AbstractIt is well known that proteins denature under high pressure. The mechanism that underlies su...
It is well known that proteins denature under high pressure. The mechanism that underlies such a pro...
Steric constraints, charged interactions and many other forces important to protein structure and fu...
We have solved the 2.0-Å resolution crystal structures of four cavity-creating Ile/LeufAla mutations...
We have solved the 2.0-Å resolution crystal structures of four cavity-creating Ile/LeufAla mutations...
It has been known for nearly 100 years that pressure unfolds proteins, yet the physical basis of thi...
AbstractBackground The classical picture of the hydrophobic stabilization of proteins invokes a rese...
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)It has been known for nearly 100 ...
Proteins can be denatured by pressures of a few hundred MPa. This finding apparently contradicts the...
Water in the protein interior serves important structural and functional roles and is also increasin...
AbstractThe effects of two single point cavity forming mutations, F110S and I7S, on the unfolding vo...
It is commonly accepted that water plays an essential role in determining both the stability of the ...
A theoretical approach is developed to quantify hydrophobic hydration and interactions on a molecula...
Cold and pressure denaturation are believed to have their molecular origin in hydrophobic interactio...
AbstractMolecular dynamics simulations of Staphylococcal nuclease and of 10 variants with internal p...
AbstractIt is well known that proteins denature under high pressure. The mechanism that underlies su...
It is well known that proteins denature under high pressure. The mechanism that underlies such a pro...
Steric constraints, charged interactions and many other forces important to protein structure and fu...
We have solved the 2.0-Å resolution crystal structures of four cavity-creating Ile/LeufAla mutations...
We have solved the 2.0-Å resolution crystal structures of four cavity-creating Ile/LeufAla mutations...
It has been known for nearly 100 years that pressure unfolds proteins, yet the physical basis of thi...
AbstractBackground The classical picture of the hydrophobic stabilization of proteins invokes a rese...
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)It has been known for nearly 100 ...
Proteins can be denatured by pressures of a few hundred MPa. This finding apparently contradicts the...
Water in the protein interior serves important structural and functional roles and is also increasin...
AbstractThe effects of two single point cavity forming mutations, F110S and I7S, on the unfolding vo...
It is commonly accepted that water plays an essential role in determining both the stability of the ...
A theoretical approach is developed to quantify hydrophobic hydration and interactions on a molecula...
Cold and pressure denaturation are believed to have their molecular origin in hydrophobic interactio...
AbstractMolecular dynamics simulations of Staphylococcal nuclease and of 10 variants with internal p...
AbstractIt is well known that proteins denature under high pressure. The mechanism that underlies su...
It is well known that proteins denature under high pressure. The mechanism that underlies such a pro...