AbstractWe describe a method of measuring neutron scattering of aligned membranes with the momentum transfer oriented parallel or partly perpendicular to the plane of the membranes. The method obtains the complete information for the structures within fluid membranes obtainable by scattering. Data from alamethicin- and magainin-induced pores are presented. Although the in-plane scattering curves of these two peptides are similar to each other, their off-plane scattering patterns are strikingly distinct. Magainin pores exhibit intermembrane correlations
Current research in membrane protein biophysics highlights the emerging role of lipids in shaping me...
International audienceSmall angle neutron scattering (SANS) is a powerful tool for studying the stru...
International audienceSmall angle neutron scattering (SANS) is a powerful tool for studying the stru...
ABSTRACT We describe a method of measuring neutron scattering of aligned membranes with the momentum...
A technique of neutron in-plane scattering for studying the structures of peptide pores in membranes...
AbstractIn a previous paper (Yang et al., Biophys. J. 75:641–645, 1998), we showed a simple, efficie...
We report a neutron scattering study of multilamellar membranes supported on solid substrates. In co...
A technique of neutron in-plane scattering for studying the structures of peptide pores in membranes...
AbstractIn a previous paper (Yang et al., Biophys. J. 75:641–645, 1998), we showed a simple, efficie...
AbstractMagainin, a 23-residue antibiotic peptide, interacts directly with the lipid bilayer leading...
The use of neutrons as a scattering probe to investigate biological membranes has steadily grown in ...
We demonstrate a technique of measuring x-ray (or neutron) scattering with the momentum transfer par...
Scattering techniques, in particular electron, neutron and X-ray scattering have played a major role...
AbstractMagainin, a 23-residue antibiotic peptide, interacts directly with the lipid bilayer leading...
We demonstrate a technique for measuring x-ray (or neutron) scattering with the momentum transfer co...
Current research in membrane protein biophysics highlights the emerging role of lipids in shaping me...
International audienceSmall angle neutron scattering (SANS) is a powerful tool for studying the stru...
International audienceSmall angle neutron scattering (SANS) is a powerful tool for studying the stru...
ABSTRACT We describe a method of measuring neutron scattering of aligned membranes with the momentum...
A technique of neutron in-plane scattering for studying the structures of peptide pores in membranes...
AbstractIn a previous paper (Yang et al., Biophys. J. 75:641–645, 1998), we showed a simple, efficie...
We report a neutron scattering study of multilamellar membranes supported on solid substrates. In co...
A technique of neutron in-plane scattering for studying the structures of peptide pores in membranes...
AbstractIn a previous paper (Yang et al., Biophys. J. 75:641–645, 1998), we showed a simple, efficie...
AbstractMagainin, a 23-residue antibiotic peptide, interacts directly with the lipid bilayer leading...
The use of neutrons as a scattering probe to investigate biological membranes has steadily grown in ...
We demonstrate a technique of measuring x-ray (or neutron) scattering with the momentum transfer par...
Scattering techniques, in particular electron, neutron and X-ray scattering have played a major role...
AbstractMagainin, a 23-residue antibiotic peptide, interacts directly with the lipid bilayer leading...
We demonstrate a technique for measuring x-ray (or neutron) scattering with the momentum transfer co...
Current research in membrane protein biophysics highlights the emerging role of lipids in shaping me...
International audienceSmall angle neutron scattering (SANS) is a powerful tool for studying the stru...
International audienceSmall angle neutron scattering (SANS) is a powerful tool for studying the stru...