Related ArticlesValidation of helical tilt angles in the solution NMR structure of the Z domain of Staphylococcal protein A by combined analysis of residual dipolar coupling and NOE data.
Protein Sci. 2004 Feb;13(2):549-54
Authors: Zheng D, Aramini JM, Montelione GT
Staphylococcal protein A (SpA) is a virulence factor from Staphylococcus aureus that is able to bind to immunoglobulins. The 3D structures of its immunoglobulin (Ig) binding domains have been extensively studied by NMR and X-ray crystallography, and are often used as model structures in developing de novo or ab initio strategies for predicting protein structure. These small three-helix-bundle structures, reported in free proteins or Ig-bound complexes, have been determined previously using medium- to high-resolution data. Although the location and relative orientation of the three helices in most of these published 3D domain structures are consistent, there are significant differences among the reported structures regarding the tilt angle of the first helix (helix 1). We have applied residual dipolar coupling data, together with nuclear Overhauser enhancement and scalar coupling data, in refining the NMR solution structure of an engineered IgG-binding domain (Z domain) of SpA. Our results demonstrate that the three helices are almost perfectly antiparallel in orientation, with the first helix tilting slightly away from the other two helices. We propose that this high-accuracy structure of the Z domain of SpA is a more suitable target for theoretical predictions of the free domain structure than previously published lower-accuracy structures of protein A domains.
[NMR paper] Structure determination of a peptide model of the repeated helical domain in Samia cy
Structure determination of a peptide model of the repeated helical domain in Samia cynthia ricini silk fibroin before spinning by a combination of advanced solid-state NMR methods.
Related Articles Structure determination of a peptide model of the repeated helical domain in Samia cynthia ricini silk fibroin before spinning by a combination of advanced solid-state NMR methods.
J Am Chem Soc. 2003 Jun 18;125(24):7230-7
Authors: Nakazawa Y, Asakura T
Fibrous proteins unlike globular proteins, contain repetitive amino acid sequences, giving rise...
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[NMR paper] Synthesis and NMR solution structure of an alpha-helical hairpin stapled with two dis
Synthesis and NMR solution structure of an alpha-helical hairpin stapled with two disulfide bridges.
Related Articles Synthesis and NMR solution structure of an alpha-helical hairpin stapled with two disulfide bridges.
Protein Sci. 2000 May;9(5):942-55
Authors: Barthe P, Rochette S, Vita C, Roumestand C
Helical coiled-coils and bundles are some of the most common structural motifs found in proteins. Design and synthesis of alpha-helical motifs may provide interesting scaffolds that can be useful as host structures to display functional sites,...
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11-18-2010 09:15 PM
NMR structure note: solution structure of the core domain of MESD that is essential f
NMR structure note: solution structure of the core domain of MESD that is essential for proper folding of LRP5/6.
http://www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--production.springer.de-OnlineResources-Logos-springerlink.gif Related Articles NMR structure note: solution structure of the core domain of MESD that is essential for proper folding of LRP5/6.
J Biomol NMR. 2010 Aug;47(4):283-8
Authors: Chen J, Li Q, Liu CC, Zhou B, Bu G, Wang J
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09-24-2010 03:50 AM
[NMR paper] Solution structure of a de novo helical protein by 2D-NMR spectroscopy.
Solution structure of a de novo helical protein by 2D-NMR spectroscopy.
http://www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--linkinghub.elsevier.com-ihub-images-PubMedLink.gif Related Articles Solution structure of a de novo helical protein by 2D-NMR spectroscopy.
J Mol Biol. 1994 Feb 25;236(3):862-8
Authors: Kuroda Y, Nakai T, Ohkubo T
The de novo design of proteins represents a critical test for our knowledge of protein structure. However, no structure of a successfully designed protein has yet been reported. This paper reports the design...
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08-22-2010 03:33 AM
[NMR paper] Solution structure of a de novo helical protein by 2D-NMR spectroscopy.
Solution structure of a de novo helical protein by 2D-NMR spectroscopy.
http://www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--linkinghub.elsevier.com-ihub-images-PubMedLink.gif Related Articles Solution structure of a de novo helical protein by 2D-NMR spectroscopy.
J Mol Biol. 1994 Feb 25;236(3):862-8
Authors: Kuroda Y, Nakai T, Ohkubo T
The de novo design of proteins represents a critical test for our knowledge of protein structure. However, no structure of a successfully designed protein has yet been reported. This paper reports the design...
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08-22-2010 03:33 AM
[NMR paper] Analysis of phi and chi 1 torsion angles for hen lysozyme in solution from 1H NMR spi
Analysis of phi and chi 1 torsion angles for hen lysozyme in solution from 1H NMR spin-spin coupling constants.
Related Articles Analysis of phi and chi 1 torsion angles for hen lysozyme in solution from 1H NMR spin-spin coupling constants.
Biochemistry. 1991 Jan 29;30(4):986-96
Authors: Smith LJ, Sutcliffe MJ, Redfield C, Dobson CM
Three-bond 3JHN alpha coupling constants have been determined for 106 residues and 3J alpha beta coupling constants have been measured for 57 residues of the 129-residue protein hen egg white lysozyme. These NMR...
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08-21-2010 11:16 PM
NMR structure note: solution structure of the core domain of MESD that is essential f
NMR structure note: solution structure of the core domain of MESD that is essential for proper folding of LRP5/6
Content Type Journal Article
DOI 10.1007/s10858-010-9426-8
Authors
Jianglei Chen, Wayne State University Department of Biochemistry and Molecular Biology, School of Medicine Detroit MI 48201 USA
Qianqian Li, Wayne State University Department of Biochemistry and Molecular Biology, School of Medicine Detroit MI 48201 USA
Chia-Chen Liu, Washington University Departments of Pediatrics, and Cell Biology and Physiology, School of Medicine St. Louis MO 63110 USA