Abstract
The structure and alignment of the amphipathic α-helical antimicrobial peptide PGLa in a lipid membrane is determined with high accuracy by solid-state 2H-NMR. Orientational constraints are derived from a series of eight alanine-3,3,3-d3-labeled peptides, in which either a native alanine is nonperturbingly labeled (4x), or a glycine (2x) or isoleucine (2x) is selectively replaced. The concentration dependent realignment of the α-helix from the surface-bound "S-state" to a tilted "T-state" by 30° is precisely calculated using the quadrupole splittings of the four nonperturbing labels as constraints. The remaining, potentially perturbing alanine-3,3,3-d3 labels show only minor deviations from the unperturbed peptide structure and help to single out the unique solution. Comparison with previous 19F-NMR constraints from 4-CF3-phenylglycine labels shows that the structure and orientation of the PGLa peptide is not much disturbed even by these bulky nonnatural side chains, which contain CF3 groups that offer a 20-fold better NMR sensitivity than CD3 groups. © 2006 by the Biophysical Society.
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CITATION STYLE
Strandberg, E., Wadhwani, P., Tremouilhac, P., Dürr, U. H. N., & Ulrich, A. S. (2006). Solid-state NMR analysis of the PGLa peptide orientation in DMPC bilayers: Structural fidelity of 2H-labels versus high sensitivity of 19F-NMR. Biophysical Journal, 90(5), 1676–1686. https://doi.org/10.1529/biophysj.105.073858
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