Related ArticlesNMR structure determination of proteins and protein complexes larger than 20 kDa.
Curr Opin Chem Biol. 1998 Oct;2(5):564-70
Authors: Clore GM, Gronenborn AM
Recent advances in multidimensional nuclear magnetic resonance methodology to obtain 1H, 15N and 13C resonance assignments, interproton distance and torsion angle restraints, and restraints that characterize long-range order, coupled with new methods of structure refinement and novel methods for reducing linewidths, have permitted three-dimensional solution structures of single chain proteins in excess of 250 residues and multimeric protein in excess of 40 kDa to be solved. These developments may permit the determination by nuclear magnetic resonance of macromolecular structures up to molecular weights in the 50-60 kDa range, thereby bringing into reach numerous systems of considerable biological interest, including a large variety of protein-protein and protein-nucleic acid complexes.
[NMR paper] Structure determination of protein/RNA complexes by NMR.
Structure determination of protein/RNA complexes by NMR.
Related Articles Structure determination of protein/RNA complexes by NMR.
Methods Enzymol. 2005;394:525-45
Authors: Wu H, Finger LD, Feigon J
Structure determination of protein?RNA complexes in solution provides unique insights into factors that are involved in protein/RNA recognition. Here, we review the methodology used in our laboratory to overcome the challenges of protein?RNA structure determination by nuclear magnetic resonance (NMR). We use as two examples complexes recently...
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[NMR paper] Structure determination of protein complexes by NMR.
Structure determination of protein complexes by NMR.
Related Articles Structure determination of protein complexes by NMR.
Methods Mol Biol. 2004;278:255-88
Authors: Nietlispach D, Mott HR, Stott KM, Nielsen PR, Thiru A, Laue ED
This chapter describes nuclear magnetic resonance (NMR) methods that can be used to determine the structures of protein complexes. Many of these techniques are also applicable to other systems (e.g., protein-nucleic acid complexes). In the first section, we discuss methodologies for optimizing the sample conditions for...
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Structure determination and dynamics of protein-RNA complexes by NMR spectroscopy
Structure determination and dynamics of protein-RNA complexes by NMR spectroscopy
Publication year: 2010
Source: Progress in Nuclear Magnetic Resonance Spectroscopy, In Press, Accepted Manuscript, Available online 6 October 2010</br>
Cyril, Dominguez , Mario, Schubert , Olivier, Duss , Sapna, Ravindranathan , Frédéric H.-T., Allain</br>
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[NMR paper] An approach to global fold determination using limited NMR data from larger proteins
An approach to global fold determination using limited NMR data from larger proteins selectively protonated at specific residue types.
An approach to global fold determination using limited NMR data from larger proteins selectively protonated at specific residue types.
J Biomol NMR. 1996 Oct;8(3):360-8
Authors: Smith BO, Ito Y, Raine A, Teichmann S, Ben-Tovim L, Nietlispach D, Broadhurst RW, Terada T, Kelly M, Oschkinat H, Shibata T, Yokoyama S, Laue ED
A combination of calculation and experiment is used to demonstrate that the global fold of...
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[NMR paper] Structures of larger proteins, protein-ligand and protein-DNA complexes by multi-dime
Structures of larger proteins, protein-ligand and protein-DNA complexes by multi-dimensional heteronuclear NMR.
Related Articles Structures of larger proteins, protein-ligand and protein-DNA complexes by multi-dimensional heteronuclear NMR.
Prog Biophys Mol Biol. 1994;62(2):153-84
Authors: Clore GM, Gronenborn AM
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[NMR paper] Structures of larger proteins, protein-ligand and protein-DNA complexes by multi-dime
Structures of larger proteins, protein-ligand and protein-DNA complexes by multi-dimensional heteronuclear NMR.
Related Articles Structures of larger proteins, protein-ligand and protein-DNA complexes by multi-dimensional heteronuclear NMR.
Prog Biophys Mol Biol. 1994;62(2):153-84
Authors: Clore GM, Gronenborn AM
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PCS-based structure determination of proteinâ??protein complexes
Abstract A simple and fast nuclear magnetic resonance method for docking proteins using pseudo-contact shift (PCS) and 1HN/15N chemical shift perturbation is presented. PCS is induced by a paramagnetic lanthanide ion that is attached to a target protein using a lanthanide binding peptide tag anchored at two points. PCS provides long-range (~40 Ã?) distance and angular restraints between the lanthanide ion and the observed nuclei, while the 1HN/15N chemical shift perturbation data provide loose contact-surface information. The usefulness of this method was demonstrated through the structure...
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Structure Determination of Protein Complexes by NMR
Structure Determination of Protein Complexes by NMR
D. Nietlispach, H.R. Mott, K.M. Stott, P.R. Nielsen, A. Thiru & E.D. Laue
The Department of Biochemistry, University of Cambridge
Introduction
As the structures of more proteins and domains are solved by structural genomics projects, the future of structural biology will be oriented more toward the study of macromolecular complexes. Since so many biological processes are mediated by interactions between proteins, it is important to study them at a molecular level. The study of protein-protein interactions also has applications in a...