Determination of a molecular torsional angle in the metarhodopsin-I photointermediate of rhodopsin by double-quantum solid-state NMR
✍ Scribed by X. Feng; P.J.E. Verdegem; M. Edén; D. Sandström; Y.K. Lee; P.H.M. Bovee-Geurts; W.J. de Grip; J. Lugtenburg; H.J.M. de Groot; M.H. Levitt
- Book ID
- 110263230
- Publisher
- Springer Netherlands
- Year
- 2000
- Tongue
- English
- Weight
- 107 KB
- Volume
- 16
- Category
- Article
- ISSN
- 0925-2738
No coin nor oath required. For personal study only.
📜 SIMILAR VOLUMES
A solid state NMR technique for the determination of peptide backbone conformations at specific sites in unoriented samples under magic angle spinning (MAS) is described and demonstrated on a doubly labeled polycrystalline sample of the tripeptide AlaGlyGly and a sextuply labeled lyophilized sample
Double-quantum heteronuclear local field NMR is performed on a sample of a 13C2-labeled disaccharide, in which the two 13C spins are located on opposite sides of the glycosidic linkage. The evolution of the double-quantum coherences is found to be consistent with the solid-state conformation of the
The B-O-B bond angle distributions for both ring and non-ring boron sites in vitreous B 2 O 3 have been determined by 11 B double rotation (DOR) NMR and multiple-quantum (MQ) DOR NMR. The [B 3 O 6 ] boroxol rings are observed to have a mean internal B-O-B angle of 120.070.71 with a small standard de
We demonstrate a dipolar-chemical shift correlation technique for sign-sensitive determination of the torsion angle in solid peptides and proteins under magic-angle spinning. The indirect dimension of the experiment is obtained by separate but synchronous evolution of the magnetization under the 15