SummarySite-specific attachment of paramagnetic lanthanide ions to a protein generates pseudocontact shifts (PCS) in the nuclear magnetic resonance (NMR) spectra of the protein that are easily measured as changes in chemical shifts. By labeling the protein with lanthanide tags at four different sites, PCSs are observed for most amide protons and accurate information is obtained about their coordinates in three-dimensional space. The approach is demonstrated with the chaperone ERp29, for which large differences have been reported between X-ray and NMR structures of the C-terminal domain, ERp29-C. The results unambiguously show that the structure of rat ERp29-C in solution is similar to the crystal structure of human ERp29-C. PCSs of backbone...
Paramagnetic centers in biomolecules, such as specific metal ions that are bound to a protein, affec...
The paramagnetism of lanthanide ions offers outstanding opportunities for fast determinations of the...
Pseudocontact shifts (PCS) induced by paramagnetic lanthanide ions provide unique long-range structu...
Pseudocontact shifts (PCS) encode long-range information on 3D structures of protein backbones and s...
Site-specific attachment of paramagnetic lanthanide ions to a protein generates pseudocontact shifts...
Computational and nuclear magnetic resonance hybrid approaches provide efficient tools for 3D struct...
The advent of different lanthanide-binding reagents has made site-specific labelling of proteins wit...
Pseudocontact shifts (PCS) induced by tags loaded with paramagnetic lanthanide ions provide powerful...
Paramagnetic metal ions generate pseudocontact shifts (PCSs) in nuclear magnetic resonance spectra t...
Pseudocontact shifts (PCSs) generated by paramagnetic metal ions contribute highly informative long-...
Paramagnetic metal ions generate pseudocontact shifts (PCSs) in nuclear magnetic resonance spectra t...
A novel nuclear magnetic resonance (NMR) strategy based on labeling with lanthanides achieves rapid ...
Structural studies of proteins and protein-ligand complexes by nuclear magnetic resonance (NMR) spec...
Structural studies of proteins and protein-ligand complexes by nuclear magnetic resonance (NMR) spec...
Pseudocontact shifts (PCSs) generated by a paramagnetic metal ion provide valuable long-range inform...
Paramagnetic centers in biomolecules, such as specific metal ions that are bound to a protein, affec...
The paramagnetism of lanthanide ions offers outstanding opportunities for fast determinations of the...
Pseudocontact shifts (PCS) induced by paramagnetic lanthanide ions provide unique long-range structu...
Pseudocontact shifts (PCS) encode long-range information on 3D structures of protein backbones and s...
Site-specific attachment of paramagnetic lanthanide ions to a protein generates pseudocontact shifts...
Computational and nuclear magnetic resonance hybrid approaches provide efficient tools for 3D struct...
The advent of different lanthanide-binding reagents has made site-specific labelling of proteins wit...
Pseudocontact shifts (PCS) induced by tags loaded with paramagnetic lanthanide ions provide powerful...
Paramagnetic metal ions generate pseudocontact shifts (PCSs) in nuclear magnetic resonance spectra t...
Pseudocontact shifts (PCSs) generated by paramagnetic metal ions contribute highly informative long-...
Paramagnetic metal ions generate pseudocontact shifts (PCSs) in nuclear magnetic resonance spectra t...
A novel nuclear magnetic resonance (NMR) strategy based on labeling with lanthanides achieves rapid ...
Structural studies of proteins and protein-ligand complexes by nuclear magnetic resonance (NMR) spec...
Structural studies of proteins and protein-ligand complexes by nuclear magnetic resonance (NMR) spec...
Pseudocontact shifts (PCSs) generated by a paramagnetic metal ion provide valuable long-range inform...
Paramagnetic centers in biomolecules, such as specific metal ions that are bound to a protein, affec...
The paramagnetism of lanthanide ions offers outstanding opportunities for fast determinations of the...
Pseudocontact shifts (PCS) induced by paramagnetic lanthanide ions provide unique long-range structu...