AbstractSite-directed spin-labeling and electron paramagnetic resonance are powerful tools for studying structure and conformational dynamics of proteins, especially in membranes. The position of the spin label is used as an indicator of the position of the site to which it is attached. The interpretation of these experiments is based on the assumptions that the spin label does not affect the peptide configuration and that it has a fixed orientation and distance with respect to the protein backbone. Here, the validity of these assumptions is examined through implicit membrane molecular dynamics simulations of the influenza hemagglutinin fusion peptide that has been labeled with methanethiosulfonate spin label. We find that the methanethiosu...
M2 is a homotetrameric membrane protein critical to generation of membrane curvature in the budding ...
AbstractElectron paramagnetic resonance (EPR) spectroscopy using site-directed spin-labeling is an a...
Site-directed mutagenesis was used to produce 27 single cysteine mutants of bacteriophage M13 major ...
AbstractSite-directed spin-labeling and electron paramagnetic resonance are powerful tools for study...
Trapping membrane proteins in the confines of a crystal lattice obscures dynamic modes essential for...
Trapping membrane proteins in the confines of a crystal lattice obscures dynamic modes essential for...
We present a new approach to obtain details on the distribution and average structure and locations ...
We present a new approach to obtain details on the distribution and average structure and locations ...
Molecular modeling based on a hybrid evolutionary optimization and an information condensation algor...
M2 is a homotetrameric membrane protein critical to generation of membrane curvature in the budding ...
AbstractWe present an approach for incorporating solvent accessibility data from electron paramagnet...
AbstractSite-directed mutagenesis was used to produce 27 single cysteine mutants of bacteriophage M1...
In the last decade, joint efforts of biologists, chemists and physicists have helped in understandin...
ABSTRACT Site-directed mutagenesis was used to produce 27 single cysteine mutants of bacteriophage M...
AbstractSite-directed mutagenesis was used to produce 27 single cysteine mutants of bacteriophage M1...
M2 is a homotetrameric membrane protein critical to generation of membrane curvature in the budding ...
AbstractElectron paramagnetic resonance (EPR) spectroscopy using site-directed spin-labeling is an a...
Site-directed mutagenesis was used to produce 27 single cysteine mutants of bacteriophage M13 major ...
AbstractSite-directed spin-labeling and electron paramagnetic resonance are powerful tools for study...
Trapping membrane proteins in the confines of a crystal lattice obscures dynamic modes essential for...
Trapping membrane proteins in the confines of a crystal lattice obscures dynamic modes essential for...
We present a new approach to obtain details on the distribution and average structure and locations ...
We present a new approach to obtain details on the distribution and average structure and locations ...
Molecular modeling based on a hybrid evolutionary optimization and an information condensation algor...
M2 is a homotetrameric membrane protein critical to generation of membrane curvature in the budding ...
AbstractWe present an approach for incorporating solvent accessibility data from electron paramagnet...
AbstractSite-directed mutagenesis was used to produce 27 single cysteine mutants of bacteriophage M1...
In the last decade, joint efforts of biologists, chemists and physicists have helped in understandin...
ABSTRACT Site-directed mutagenesis was used to produce 27 single cysteine mutants of bacteriophage M...
AbstractSite-directed mutagenesis was used to produce 27 single cysteine mutants of bacteriophage M1...
M2 is a homotetrameric membrane protein critical to generation of membrane curvature in the budding ...
AbstractElectron paramagnetic resonance (EPR) spectroscopy using site-directed spin-labeling is an a...
Site-directed mutagenesis was used to produce 27 single cysteine mutants of bacteriophage M13 major ...