AbstractThe functional state of a membrane-active peptide is often defined by its conformation, molecular orientation, and its oligomeric state in the lipid bilayer. These “static” structural properties can be routinely studied by solid state NMR using isotope-labeled peptides. In the highly dynamic environment of a liquid crystalline biomembrane, however, the whole-body fluctuations of a peptide are also of paramount importance, although difficult to address and most often ignored. Yet it turns out that disregarding such motional averaging in calculating the molecular alignment from orientational NMR-constraints may give a misleading, if not false picture of the system. Here, we demonstrate that the reliability of a simplified static or an...
AbstractAs the major component of membrane proteins, transmembrane helices embedded in anisotropic b...
AbstractThe structural organization in a peptide/membrane supramolecular complex is best described b...
The membrane alignment of helical amphiphilic peptides in oriented phospholipid bilayers can be obta...
AbstractThe functional state of a membrane-active peptide is often defined by its conformation, mole...
AbstractSolid-state 2H-NMR is routinely used to determine the alignment of membrane-bound peptides. ...
AbstractBiological membranes are characterized by a high degree of dynamics. In order to understand ...
AbstractMembrane proteins and peptides exhibit a preferred orientation in the lipid bilayer while fl...
AbstractThe dynamics of membrane-spanning peptides have a strong affect on the solid-state NMR obser...
AbstractA new solid-state NMR-based strategy is established for the precise and efficient analysis o...
AbstractSolid-state NMR (SSNMR) is an invaluable tool for determining orientations of membrane prote...
AbstractThe structure and alignment of the amphipathic α-helical antimicrobial peptide PGLa in a lip...
This is the publisher version. Copyright 2011 by Elsevier.Solid-state NMR (SSNMR) is a powerful tech...
AbstractThe motional averaging of powder pattern line shapes is one of the most fundamental aspects ...
AbstractSolid-state NMR spectroscopy is being developed at a fast pace for the structural investigat...
AbstractSolid-state NMR (SSNMR) is a powerful technique to describe the orientations of membrane pro...
AbstractAs the major component of membrane proteins, transmembrane helices embedded in anisotropic b...
AbstractThe structural organization in a peptide/membrane supramolecular complex is best described b...
The membrane alignment of helical amphiphilic peptides in oriented phospholipid bilayers can be obta...
AbstractThe functional state of a membrane-active peptide is often defined by its conformation, mole...
AbstractSolid-state 2H-NMR is routinely used to determine the alignment of membrane-bound peptides. ...
AbstractBiological membranes are characterized by a high degree of dynamics. In order to understand ...
AbstractMembrane proteins and peptides exhibit a preferred orientation in the lipid bilayer while fl...
AbstractThe dynamics of membrane-spanning peptides have a strong affect on the solid-state NMR obser...
AbstractA new solid-state NMR-based strategy is established for the precise and efficient analysis o...
AbstractSolid-state NMR (SSNMR) is an invaluable tool for determining orientations of membrane prote...
AbstractThe structure and alignment of the amphipathic α-helical antimicrobial peptide PGLa in a lip...
This is the publisher version. Copyright 2011 by Elsevier.Solid-state NMR (SSNMR) is a powerful tech...
AbstractThe motional averaging of powder pattern line shapes is one of the most fundamental aspects ...
AbstractSolid-state NMR spectroscopy is being developed at a fast pace for the structural investigat...
AbstractSolid-state NMR (SSNMR) is a powerful technique to describe the orientations of membrane pro...
AbstractAs the major component of membrane proteins, transmembrane helices embedded in anisotropic b...
AbstractThe structural organization in a peptide/membrane supramolecular complex is best described b...
The membrane alignment of helical amphiphilic peptides in oriented phospholipid bilayers can be obta...