Long-range structural restraints in spin-labeled proteins probed by solid-state nuclear magnetic resonance spectroscopy. 2007

Philippe S Nadaud, and Jonathan J Helmus, and Nicole Höfer, and Christopher P Jaroniec
Department of Chemistry, The Ohio State University, Columbus, Ohio 43210, USA.

UI MeSH Term Description Entries
D008958 Models, Molecular Models used experimentally or theoretically to study molecular shape, electronic properties, or interactions; includes analogous molecules, computer-generated graphics, and mechanical structures. Molecular Models,Model, Molecular,Molecular Model
D011487 Protein Conformation The characteristic 3-dimensional shape of a protein, including the secondary, supersecondary (motifs), tertiary (domains) and quaternary structure of the peptide chain. PROTEIN STRUCTURE, QUATERNARY describes the conformation assumed by multimeric proteins (aggregates of more than one polypeptide chain). Conformation, Protein,Conformations, Protein,Protein Conformations
D011506 Proteins Linear POLYPEPTIDES that are synthesized on RIBOSOMES and may be further modified, crosslinked, cleaved, or assembled into complex proteins with several subunits. The specific sequence of AMINO ACIDS determines the shape the polypeptide will take, during PROTEIN FOLDING, and the function of the protein. Gene Products, Protein,Gene Proteins,Protein,Protein Gene Products,Proteins, Gene
D001665 Binding Sites The parts of a macromolecule that directly participate in its specific combination with another molecule. Combining Site,Binding Site,Combining Sites,Site, Binding,Site, Combining,Sites, Binding,Sites, Combining
D013113 Spin Labels Molecules which contain an atom or a group of atoms exhibiting an unpaired electron spin that can be detected by electron spin resonance spectroscopy and can be bonded to another molecule. (McGraw-Hill Dictionary of Chemical and Technical Terms, 4th ed) Spin Label,Label, Spin,Labels, Spin
D019906 Nuclear Magnetic Resonance, Biomolecular NMR spectroscopy on small- to medium-size biological macromolecules. This is often used for structural investigation of proteins and nucleic acids, and often involves more than one isotope. Biomolecular Nuclear Magnetic Resonance,Heteronuclear Nuclear Magnetic Resonance,NMR Spectroscopy, Protein,NMR, Biomolecular,NMR, Heteronuclear,NMR, Multinuclear,Nuclear Magnetic Resonance, Heteronuclear,Protein NMR Spectroscopy,Biomolecular NMR,Heteronuclear NMR,Multinuclear NMR,NMR Spectroscopies, Protein,Protein NMR Spectroscopies,Spectroscopies, Protein NMR,Spectroscopy, Protein NMR

Related Publications

Philippe S Nadaud, and Jonathan J Helmus, and Nicole Höfer, and Christopher P Jaroniec
January 1989, Methods in enzymology,
Philippe S Nadaud, and Jonathan J Helmus, and Nicole Höfer, and Christopher P Jaroniec
January 1989, Methods in enzymology,
Philippe S Nadaud, and Jonathan J Helmus, and Nicole Höfer, and Christopher P Jaroniec
October 2018, Journal of the American Chemical Society,
Philippe S Nadaud, and Jonathan J Helmus, and Nicole Höfer, and Christopher P Jaroniec
March 2012, Proceedings of the National Academy of Sciences of the United States of America,
Philippe S Nadaud, and Jonathan J Helmus, and Nicole Höfer, and Christopher P Jaroniec
January 2021, Magnetic resonance (Gottingen, Germany),
Philippe S Nadaud, and Jonathan J Helmus, and Nicole Höfer, and Christopher P Jaroniec
September 2017, Journal of visualized experiments : JoVE,
Philippe S Nadaud, and Jonathan J Helmus, and Nicole Höfer, and Christopher P Jaroniec
February 2010, Journal of the American Chemical Society,
Philippe S Nadaud, and Jonathan J Helmus, and Nicole Höfer, and Christopher P Jaroniec
March 2003, Journal of pharmaceutical sciences,
Philippe S Nadaud, and Jonathan J Helmus, and Nicole Höfer, and Christopher P Jaroniec
January 2015, Chembiochem : a European journal of chemical biology,
Philippe S Nadaud, and Jonathan J Helmus, and Nicole Höfer, and Christopher P Jaroniec
June 2018, Annual review of analytical chemistry (Palo Alto, Calif.),
Copied contents to your clipboard!