Helix conformations in 7TM membrane proteins determined using oriented-sample solid-state NMR with multiple residue-specific 15N labeling.

Oriented solid-state NMR in combination with multiple-residue-specific (15)N labeling and extensive numerical spectral analysis is proposed to determine helix conformations of large membrane proteins in native membranes. The method is demonstrated on uniaxially oriented samples of (15)N-methionine,...

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Main Authors: Vosegaard, T, Kamihira-Ishijima, M, Watts, A, Nielsen, N
Format: Journal article
Language:English
Published: 2008
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author Vosegaard, T
Kamihira-Ishijima, M
Watts, A
Nielsen, N
author_facet Vosegaard, T
Kamihira-Ishijima, M
Watts, A
Nielsen, N
author_sort Vosegaard, T
collection OXFORD
description Oriented solid-state NMR in combination with multiple-residue-specific (15)N labeling and extensive numerical spectral analysis is proposed to determine helix conformations of large membrane proteins in native membranes. The method is demonstrated on uniaxially oriented samples of (15)N-methionine, -valine, and -glycine-labeled bacteriorhopsin in native purple membranes. Experimental two-dimensional (1)H-(15)N dipole-dipole coupling versus (15)N chemical shift spectra for all samples are analyzed numerically to establish combined constraints on the orientation of the seven transmembrane helices relative to the membrane bilayer normal. Since the method does not depend on specific resonance assignments and proves robust toward nonidealities in the sample alignment, it may be generally feasible for the study of conformational arrangement and function-induced conformation changes of large integral membrane proteins.
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spelling oxford-uuid:f7e0d010-c4c4-4698-82b5-4d97b8fb98cc2022-03-27T12:45:52ZHelix conformations in 7TM membrane proteins determined using oriented-sample solid-state NMR with multiple residue-specific 15N labeling.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:f7e0d010-c4c4-4698-82b5-4d97b8fb98ccEnglishSymplectic Elements at Oxford2008Vosegaard, TKamihira-Ishijima, MWatts, ANielsen, NOriented solid-state NMR in combination with multiple-residue-specific (15)N labeling and extensive numerical spectral analysis is proposed to determine helix conformations of large membrane proteins in native membranes. The method is demonstrated on uniaxially oriented samples of (15)N-methionine, -valine, and -glycine-labeled bacteriorhopsin in native purple membranes. Experimental two-dimensional (1)H-(15)N dipole-dipole coupling versus (15)N chemical shift spectra for all samples are analyzed numerically to establish combined constraints on the orientation of the seven transmembrane helices relative to the membrane bilayer normal. Since the method does not depend on specific resonance assignments and proves robust toward nonidealities in the sample alignment, it may be generally feasible for the study of conformational arrangement and function-induced conformation changes of large integral membrane proteins.
spellingShingle Vosegaard, T
Kamihira-Ishijima, M
Watts, A
Nielsen, N
Helix conformations in 7TM membrane proteins determined using oriented-sample solid-state NMR with multiple residue-specific 15N labeling.
title Helix conformations in 7TM membrane proteins determined using oriented-sample solid-state NMR with multiple residue-specific 15N labeling.
title_full Helix conformations in 7TM membrane proteins determined using oriented-sample solid-state NMR with multiple residue-specific 15N labeling.
title_fullStr Helix conformations in 7TM membrane proteins determined using oriented-sample solid-state NMR with multiple residue-specific 15N labeling.
title_full_unstemmed Helix conformations in 7TM membrane proteins determined using oriented-sample solid-state NMR with multiple residue-specific 15N labeling.
title_short Helix conformations in 7TM membrane proteins determined using oriented-sample solid-state NMR with multiple residue-specific 15N labeling.
title_sort helix conformations in 7tm membrane proteins determined using oriented sample solid state nmr with multiple residue specific 15n labeling
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AT wattsa helixconformationsin7tmmembraneproteinsdeterminedusingorientedsamplesolidstatenmrwithmultipleresiduespecific15nlabeling
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