Related ArticlesNative-like beta-hairpin structure in an isolated fragment from ferredoxin: NMR and CD studies of solvent effects on the N-terminal 20 residues.
Protein Eng. 1996 Jul;9(7):559-65
Authors: Searle MS, Zerella R, Williams DH, Packman LC
The conformational properties of protein fragments have been widely studied as models of the earliest initiation events in protein folding. While native-like alpha-helices and beta-turns have been identified, less is known about the factors that underly beta-sheet formation, in particular beta-hairpins, where considerably greater long-range order is required. The N-terminal 20 residue sequence of native ferredoxin I (from the blue-green alga Aphanothece sacrum) forms a beta-hairpin in the native structure and has been studied in isolation by NMR and CD spectroscopy. Local native-like interactions alone are unable to stabilize significantly a folded conformation of the 20-residue fragment in purely aqueous solution. However, we show that the addition of low levels of organic co-solvents promotes formation of native-like beta-hairpin structure. The results suggest an intrinsic propensity of the peptide to form a native-like beta-hairpin structure, and that the organic co-solvent acts in lieu of the stabilizing influence of tertiary interactions (probably hydrophobic contacts) which occur in the folding of the complete ferredoxin sequence. The structure of the isolated hairpin, including the native-like register of interstrand hydrogen bonding interactions, appears to be determined entirely by the amino acid sequence. The solvent conditions employed have enabled this intrinsic property to be established.
[NMR paper] Amyloid fibril formation by A beta 16-22, a seven-residue fragment of the Alzheimer's
Amyloid fibril formation by A beta 16-22, a seven-residue fragment of the Alzheimer's beta-amyloid peptide, and structural characterization by solid state NMR.
Related Articles Amyloid fibril formation by A beta 16-22, a seven-residue fragment of the Alzheimer's beta-amyloid peptide, and structural characterization by solid state NMR.
Biochemistry. 2000 Nov 14;39(45):13748-59
Authors: Balbach JJ, Ishii Y, Antzutkin ON, Leapman RD, Rizzo NW, Dyda F, Reed J, Tycko R
The seven-residue peptide N-acetyl-Lys-Leu-Val-Phe-Phe-Ala-Glu-NH(2), called A...
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[NMR paper] Motional dynamics of residues in a beta-hairpin peptide measured by 13C-NMR relaxatio
Motional dynamics of residues in a beta-hairpin peptide measured by 13C-NMR relaxation.
Related Articles Motional dynamics of residues in a beta-hairpin peptide measured by 13C-NMR relaxation.
Protein Sci. 1998 Mar;7(3):720-9
Authors: Ramirez-Alvarado M, Daragan VA, Serrano L, Mayo KH
Structurally characterizing partially folded peptides is problematic given the nature of their transient conformational states. 13C-NMR relaxation data can provide information on the geometry of bond rotations, motional restrictions, and correlated bond rotations...
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[NMR paper] An NMR study on the beta-hairpin region of barnase.
An NMR study on the beta-hairpin region of barnase.
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Fold Des. 1996;1(3):231-41
Authors: Neira JL, Fersht AR
BACKGROUND: The beta-hairpin of barnase (residues Ser92-Leu95) has been proposed in theoretical and protein engineering studies to be an initiation site for folding . There is evidence for residual structure in this region from NMR studies of the denatured protein under different denaturing conditions . A more detailed analysis is possible by NMR studies of isolated...
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[NMR paper] NMR study of the reconstitution of the beta-sheet of thioredoxin by fragment compleme
NMR study of the reconstitution of the beta-sheet of thioredoxin by fragment complementation.
Related Articles NMR study of the reconstitution of the beta-sheet of thioredoxin by fragment complementation.
Proteins. 1995 May;22(1):41-4
Authors: Tasayco ML, Chao K
The study of complementary protein fragments is thought to be generally useful to identify early folding intermediates. A prerequisite for these studies is the reconstitution of the native-like structure by fragment complementation. Structural analysis of the complementation of the...
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[NMR paper] NMR solution structure of the isolated N-terminal fragment of protein-G B1 domain. Ev
NMR solution structure of the isolated N-terminal fragment of protein-G B1 domain. Evidence of trifluoroethanol induced native-like beta-hairpin formation.
Related Articles NMR solution structure of the isolated N-terminal fragment of protein-G B1 domain. Evidence of trifluoroethanol induced native-like beta-hairpin formation.
Biochemistry. 1994 May 17;33(19):6004-14
Authors: Blanco FJ, Jiménez MA, Pineda A, Rico M, Santoro J, Nieto JL
The solution structure of the isolated N-terminal fragment of streptococcal protein-G B1 domain has been...
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[NMR paper] NMR solution structure of the isolated N-terminal fragment of protein-G B1 domain. Ev
NMR solution structure of the isolated N-terminal fragment of protein-G B1 domain. Evidence of trifluoroethanol induced native-like beta-hairpin formation.
Related Articles NMR solution structure of the isolated N-terminal fragment of protein-G B1 domain. Evidence of trifluoroethanol induced native-like beta-hairpin formation.
Biochemistry. 1994 May 17;33(19):6004-14
Authors: Blanco FJ, Jiménez MA, Pineda A, Rico M, Santoro J, Nieto JL
The solution structure of the isolated N-terminal fragment of streptococcal protein-G B1 domain has been...
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[NMR paper] Tendamistat (12-26) fragment. NMR characterization of isolated beta-turn folding inte
Tendamistat (12-26) fragment. NMR characterization of isolated beta-turn folding intermediates.
http://www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--www3.interscience.wiley.com-aboutus-images-wiley_interscience_pubmed_logo_FREE_120x27.gif Related Articles Tendamistat (12-26) fragment. NMR characterization of isolated beta-turn folding intermediates.
Eur J Biochem. 1991 Sep 1;200(2):345-51
Authors: Blanco FJ, Jiménez MA, Rico M, Santoro J, Herranz J, Nieto JL
In order to determine whether regions of a protein that are turns in the native...
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[NMR paper] Tendamistat (12-26) fragment. NMR characterization of isolated beta-turn folding inte
Tendamistat (12-26) fragment. NMR characterization of isolated beta-turn folding intermediates.
http://www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--www3.interscience.wiley.com-aboutus-images-wiley_interscience_pubmed_logo_FREE_120x27.gif Related Articles Tendamistat (12-26) fragment. NMR characterization of isolated beta-turn folding intermediates.
Eur J Biochem. 1991 Sep 1;200(2):345-51
Authors: Blanco FJ, Jiménez MA, Rico M, Santoro J, Herranz J, Nieto JL
In order to determine whether regions of a protein that are turns in the native...