Internal motional amplitudes and correlated bond rotations in an alpha-helical peptide derived from 13C and 15N NMR relaxation
- PMID: 11152123
- PMCID: PMC2144496
- DOI: 10.1110/ps.9.11.2118
Internal motional amplitudes and correlated bond rotations in an alpha-helical peptide derived from 13C and 15N NMR relaxation
Abstract
Peptide GFSKAELAKARAAKRGGY folds in an alpha-helical conformation that is stabilized by formation of a hydrophobic staple motif and an N-terminal capping box (Munoz V. Blanco FJ, Serrano L, 1995, Struct Biol 2:380-385). To investigate backbone and side-chain internal motions within the helix and hydrophobic staple, residues F2, A5, L7, A8, and A10 were selectively 13C- and 15N-enriched and NMR relaxation experiments were performed in water and in water/trifluoroethanol (TFE) solution at four Larmor frequencies (62.5, 125, 150, and 200 MHz for 13C). Relaxation data were analyzed using the model free approach and an anisotropic diffusion model. In water, angular variances of motional vectors range from 10 to 20 degrees and backbone phi,psi bond rotations for helix residues A5, L7, A8, and A10 are correlated indicating the presence of Calpha-H, Calpha-Cbeta, and N-H rocking-type motions along the helix dipole axis. L7 side-chain CbetaH2 and CgammaH motions are also correlated and as motionally restricted as backbone CalphaH, suggesting considerable steric hindrance with neighboring groups. In TFE which stabilizes the fold, internal motional amplitudes are attenuated and rotational correlations are increased. For the side chain of hydrophobic staple residue F2, wobbling-in-a-cone type motions dominate in water, whereas in TFE, the Cbeta-Cgamma bond and phenyl ring fluctuate more simply about the Calpha-Cbeta bond. These data support the Daragan-Mayo model of correlated bond rotations (Daragan VA, Mayo KH, 1996, J Phys Chem 100:8378-8388) and contribute to a general understanding of internal motions in peptides and proteins.
Similar articles
-
Motional dynamics of residues in a beta-hairpin peptide measured by 13C-NMR relaxation.Protein Sci. 1998 Mar;7(3):720-9. doi: 10.1002/pro.5560070321. Protein Sci. 1998. PMID: 9541404 Free PMC article.
-
Angular variances for internal bond rotations of side chains in GXG-based tripeptides derived from (13)C-NMR relaxation measurements: Implications to protein folding.Biopolymers. 1999 Apr 15;49(5):373-383. doi: 10.1002/(SICI)1097-0282(19990415)49:5<373::AID-BIP4>3.0.CO;2-V. Biopolymers. 1999. PMID: 11180046
-
13C nuclear magnetic resonance relaxation-derived psi, phi bond rotational energy barriers and rotational restrictions for glycine 13C alpha-methylenes in a GXX-repeat hexadecapeptide.Biochemistry. 1993 Oct 12;32(40):10580-90. doi: 10.1021/bi00091a007. Biochemistry. 1993. PMID: 8399202
-
Peptide internal motions on nanosecond time scale derived from direct fitting of (13)C and (15)N NMR spectral density functions.J Magn Reson. 2000 Sep;146(1):188-95. doi: 10.1006/jmre.2000.2148. J Magn Reson. 2000. PMID: 10968972
-
Mapping of the spectral densities of N-H bond motions in eglin c using heteronuclear relaxation experiments.Biochemistry. 1992 Sep 15;31(36):8571-86. doi: 10.1021/bi00151a027. Biochemistry. 1992. PMID: 1390643
Cited by
-
Pro4 prolyl peptide bond isomerization in human galectin-7 modulates the monomer-dimer equilibrum to affect function.Biochem J. 2020 Sep 18;477(17):3147-3165. doi: 10.1042/BCJ20200499. Biochem J. 2020. PMID: 32766716 Free PMC article.
-
Comparison of (13)C(alpha)H and (15)NH backbone dynamics in protein GB1.Protein Sci. 2003 May;12(5):914-22. doi: 10.1110/ps.0228703. Protein Sci. 2003. PMID: 12717014 Free PMC article.
References
Publication types
MeSH terms
Substances
LinkOut - more resources
Full Text Sources
Miscellaneous