Molecular dynamics simulations have been used to investigate the behavior of the peripheral membrane protein, cytochrome c, covalently tethered to hydrophobic (methyl-terminated) and hydrophilic (thiol-terminated) self-assembled monolayers (SAMs). The simulations predict that the protein will undergo minor structural changes when it is tethered to either surface, and the structures differ qualitatively on the two surfaces: the protein is less spherical on the hydrophilic SAM where the polar surface residues reach out to interact with the SAM surface. The protein is completely excluded from the hydrophobic SAM but partially dissolves in the hydrophilic SAM. Consequently, the surface of the thiol-terminated SAM is considerably less ordered th...
We have simulated the structure of kinetically irreversible protein aggregates in two-dimensional sp...
Successfully immobilizing functional proteins on inorganic surfaces has long been a challenge to the...
Molecular dynamics simulations of polypeptides at high dilution near a fully hydrated bilayer membra...
Molecular dynamics simulations have been used to investigate the behavior of the peripheral membrane...
AbstractWe present a collection of molecular dynamics computer simulation studies on a model protein...
Great interest exists among chemists, physicists, biologists, materials scientists and others, in le...
Hydrophobins are small (similar to 100 aa) proteins that have an important role in the growth and de...
Hydrophobins are fungal proteins that self-assemble at hydrophilic/hydrophobic interfaces into amphi...
ABSTRACT The impact of an extensive, uniform and hydrophobic protein surface on the behavior of the ...
ABSTRACT Hydrophobins are small (100 aa) proteins that have an important role in the growth and deve...
A Grand canonical Monte Carlo technique is used to simulate the behavior of the TIP4P model of water...
The study of protein adsorption on surfaces is becoming an increasingly important topic for research...
Cytochrome c (Cyt-c) is an important membrane electron-transfer protein. To maximize its electron tr...
In part one of this thesis, the interactions and resulting complexes between heme proteins and their...
ABSTRACT Hydrophobins are fungal proteins that self-assemble at hydrophilic/hydrophobic interfaces i...
We have simulated the structure of kinetically irreversible protein aggregates in two-dimensional sp...
Successfully immobilizing functional proteins on inorganic surfaces has long been a challenge to the...
Molecular dynamics simulations of polypeptides at high dilution near a fully hydrated bilayer membra...
Molecular dynamics simulations have been used to investigate the behavior of the peripheral membrane...
AbstractWe present a collection of molecular dynamics computer simulation studies on a model protein...
Great interest exists among chemists, physicists, biologists, materials scientists and others, in le...
Hydrophobins are small (similar to 100 aa) proteins that have an important role in the growth and de...
Hydrophobins are fungal proteins that self-assemble at hydrophilic/hydrophobic interfaces into amphi...
ABSTRACT The impact of an extensive, uniform and hydrophobic protein surface on the behavior of the ...
ABSTRACT Hydrophobins are small (100 aa) proteins that have an important role in the growth and deve...
A Grand canonical Monte Carlo technique is used to simulate the behavior of the TIP4P model of water...
The study of protein adsorption on surfaces is becoming an increasingly important topic for research...
Cytochrome c (Cyt-c) is an important membrane electron-transfer protein. To maximize its electron tr...
In part one of this thesis, the interactions and resulting complexes between heme proteins and their...
ABSTRACT Hydrophobins are fungal proteins that self-assemble at hydrophilic/hydrophobic interfaces i...
We have simulated the structure of kinetically irreversible protein aggregates in two-dimensional sp...
Successfully immobilizing functional proteins on inorganic surfaces has long been a challenge to the...
Molecular dynamics simulations of polypeptides at high dilution near a fully hydrated bilayer membra...