We use Dissipative Particle Dynamics simulations, combined with parallel tempering and umbrella sampling, to investigate the potential of mean force between model transmembrane peptides in the various phases of a lipid bilayer, including the low-temperature gel phase. The observed oscillations in the effective interaction between peptides are consistent with the different structures of the surrounding lipid phases
Molecular dynamics (MD) simulations of peptide-monolayer, nanoparticle-bilayer, and peptide-peptide ...
Many biologically interesting phenomena occur on a time scale that is too long to be studied by atom...
Many biologically interesting phenomena occur on a time scale that is too long to be studied by atom...
Thesis (Ph.D.)--University of Washington, 2018The structure of cellular membranes gives rise to impo...
Thesis (Ph.D.)--University of Washington, 2018The structure of cellular membranes gives rise to impo...
Peptide-membrane interactions play an important role in a number of biological processes, such as an...
Many biological cellular processes occur at the micro- or millisecond time scale.With traditional al...
We explore the effects of the peripheral and transmembrane antimicrobial peptides on the lipid bilay...
Proteins that either embed permanently in membranes or must attach to membranes to be functional are...
Experimental characterization of molecular details is challenging, and although single molecule expe...
Many biological cellular processes occur at the micro- or millisecond time scale.With traditional al...
Many biologically interesting phenomena occur on a time scale that is too long to be studied by atom...
Molecular dynamics (MD) simulations provide a valuable approach to the dynamics, structure, and stab...
Molecular dynamics (MD) simulations provide a valuable approach to the dynamics, structure, and stab...
Many biologically interesting phenomena occur on a time scale that is too long to be studied by atom...
Molecular dynamics (MD) simulations of peptide-monolayer, nanoparticle-bilayer, and peptide-peptide ...
Many biologically interesting phenomena occur on a time scale that is too long to be studied by atom...
Many biologically interesting phenomena occur on a time scale that is too long to be studied by atom...
Thesis (Ph.D.)--University of Washington, 2018The structure of cellular membranes gives rise to impo...
Thesis (Ph.D.)--University of Washington, 2018The structure of cellular membranes gives rise to impo...
Peptide-membrane interactions play an important role in a number of biological processes, such as an...
Many biological cellular processes occur at the micro- or millisecond time scale.With traditional al...
We explore the effects of the peripheral and transmembrane antimicrobial peptides on the lipid bilay...
Proteins that either embed permanently in membranes or must attach to membranes to be functional are...
Experimental characterization of molecular details is challenging, and although single molecule expe...
Many biological cellular processes occur at the micro- or millisecond time scale.With traditional al...
Many biologically interesting phenomena occur on a time scale that is too long to be studied by atom...
Molecular dynamics (MD) simulations provide a valuable approach to the dynamics, structure, and stab...
Molecular dynamics (MD) simulations provide a valuable approach to the dynamics, structure, and stab...
Many biologically interesting phenomena occur on a time scale that is too long to be studied by atom...
Molecular dynamics (MD) simulations of peptide-monolayer, nanoparticle-bilayer, and peptide-peptide ...
Many biologically interesting phenomena occur on a time scale that is too long to be studied by atom...
Many biologically interesting phenomena occur on a time scale that is too long to be studied by atom...