Characterization of Protein–Protein Interfaces in Large Complexes by Solid-State NMR Solvent Paramagnetic Relaxation Enhancements
Characterization of Protein–Protein Interfaces in Large Complexes by Solid-State NMR Solvent Paramagnetic Relaxation Enhancements
Carl O?ster, Simone Kosol, Christoph Hartlmu?ller, Jonathan M. Lamley, Dinu Iuga, Andres Oss, Mai-Liis Org, Kalju Vanatalu, Ago Samoson, Tobias Madl and Jo?zef R. Lewandowski
http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/jacsat/0/jacsat.ahead-of-print/jacs.7b03875/20170824/images/medium/ja-2017-038753_0006.gif
Journal of the American Chemical Society
DOI: 10.1021/jacs.7b03875
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[NMR paper] Characterization of protein-protein interfaces in large complexes by solid state NMR solvent paramagnetic relaxation enhancements.
Characterization of protein-protein interfaces in large complexes by solid state NMR solvent paramagnetic relaxation enhancements.
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J Am Chem Soc. 2017 Aug 07;:
Authors: Öster C, Kosol S, Hartlmüller C, Lamley JM, Iuga D, Oss A, Org ML, Vanatalu K, Samoson A, Madl T, Lewandowski JR
Abstract
Solid-state NMR is becoming a viable alternative for obtaining information about structures and...
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Abstract
Seeing the big picture: Asymmetric macromolecular complexes that are NMR active in...
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[NMR paper] An NMR method for the determination of protein-binding interfaces using dioxygen-indu
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J Am Chem Soc. 2005 Apr 27;127(16):5826-32
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Using oxygen as a paramagnetic probe, researchers can routinely study topologies and protein-binding interfaces by NMR. The paramagnetic contribution to the amide (1)H...
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Nat Struct Biol. 2000 Mar;7(3):220-3
Authors: Takahashi H, Nakanishi T, Kami K, Arata Y, Shimada I
Identification of the interfaces of large (Mr > 50,000) protein-protein complexes in solution by high resolution NMR has typically been achieved using experiments involving chemical shift perturbation and/or hydrogen-deuterium exchange of the main chain amide...
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Trends Biotechnol. 1998 Jan;16(1):22-34
Authors: Clore GM, Gronenborn AM
Recent advances in multidimensional NMR methodology to obtain 1H, 15N and 13C resonance assignments, interproton-distance and torsion-angle restraints, and restraints that characterize long-range order have, coupled with new methods of structure refinement, permitted solution structure of proteins in excess...