| Spinning faster: protein NMR at MAS frequencies up to 126kHz |
28 |
| POTENCI: prediction of temperature, neighbor and pH-corrected chemical shifts for intrinsically disordered proteins |
16 |
| Production of isotope-labeled proteins in insect cells for NMR |
16 |
| Using Deep Neural Networks to Reconstruct Non-uniformly Sampled NMR Spectra |
10 |
| Selective labeling and unlabeling strategies in protein solid-state NMR spectroscopy |
9 |
| Investigation of the internal structure and dynamics of cellulose by C-13-NMR relaxometry and 2DPASS-MAS-NMR measurements |
8 |
| Assessing the potential of quantitative 2D HSQC NMR in C-13 enriched living organisms |
8 |
| I-PINE web server: an integrative probabilistic NMR assignment system for proteins |
7 |
| Segmental isotopic labeling of HIV-1 capsid protein assemblies for solid state NMR |
6 |
| Whole cell solid-state NMR study of Chlamydomonas reinhardtii microalgae |
6 |
| Validation of protein backbone structures calculated from NMR angular restraints using Rosetta |
6 |
| Rapid measurement of long-range distances in proteins by multidimensional C-13-F-19 REDOR NMR under fast magic-angle spinning |
6 |
| Increasing the buffering capacity of minimal media leads to higher protein yield |
6 |
| Importance of time-ordered non-uniform sampling of multidimensional NMR spectra of A beta(1-42) peptide under aggregating conditions |
6 |
| Stable isotope labeling approaches for NMR characterization of glycoproteins using eukaryotic expression systems |
6 |
| Atomic structures of excited state A-T Hoogsteen base pairs in duplex DNA by combining NMR relaxation dispersion, mutagenesis, and chemical shift calculations |
6 |
| On the use of Pichia pastoris for isotopic labeling of human GPCRs for NMR studies |
6 |
| Segmental isotopic labeling by asparaginyl endopeptidase-mediated protein ligation |
6 |
| Simultaneous determination of fast and slow dynamics in molecules using extreme CPMG relaxation dispersion experiments |
6 |
| A methyl H-1 double quantum CPMG experiment to study protein conformational exchange |
5 |
| Selective suppression of excipient signals in 2D H-1-C-13 methyl spectra of biopharmaceutical products |
5 |
| Perspective: next generation isotope-aided methods for protein NMR spectroscopy |
5 |
| NMR-based fragment screening and lead discovery accelerated by principal component analysis |
5 |
| Segmental isotope labelling and solid-state NMR of a 12 x 59 kDa motor protein: identification of structural variability |
5 |
| C-13 APSY-NMR for sequential assignment of intrinsically disordered proteins |
5 |
| Deuteration and selective labeling of alanine methyl groups of beta(2)-adrenergic receptor expressed in a baculovirus-insect cell expression system |
5 |
| NMR: an essential structural tool for integrative studies of T cell development, pMHC ligand recognition and TCR mechanobiology |
5 |
| Identification of conformation-selective nanobodies against the membrane protein insertase BamA by an integrated structural biology approach |
5 |
| Random coil shifts of posttranslationally modified amino acids |
4 |
| Multiple frequency saturation pulses reduce CEST acquisition time for quantifying conformational exchange in biomolecules |
4 |
| Dynamics of a type 2 secretion system pseudopilus unraveled by complementary approaches |
4 |
| NMR characterization of solvent accessibility and transient structure in intrinsically disordered proteins |
4 |
| A unified structural model of the mammalian translocator protein (TSPO) |
4 |
| Archiving and disseminating integrative structure models |
4 |
| F-19 NMR relaxation studies of fluorosubstituted tryptophans |
4 |
| A CON-based NMR assignment strategy for pro-rich intrinsically disordered proteins with low signal dispersion: the C-terminal domain of histone H1.0 as a case study |
4 |
| Fast MAS H-1-C-13 correlation NMR for structural investigations of plant cell walls |
4 |
| Random coil chemical shifts for serine, threonine and tyrosine phosphorylation over a broad pH range |
4 |
| Oligomeric transition and dynamics of RNA binding by the HuR RRM1 domain in solution |
4 |
| Methyl-selective isotope labeling using alpha-ketoisovalerate for the yeast Pichia pastoris recombinant protein expression system |
4 |
| Conformationally locked lanthanide chelating tags for convenient pseudocontact shift protein nuclear magnetic resonance spectroscopy |
3 |
| Hybridization of TEDOR and NCX MAS solid-state NMR experiments for simultaneous acquisition of heteronuclear correlation spectra and distance measurements |
3 |
| Improving the sensitivity of FT-NMR spectroscopy by apodization weighted sampling |
3 |
| Improving yields of deuterated, methyl labeled protein by growing in H2O |
3 |
| Application of methyl-TROSY to a large paramagnetic membrane protein without perdeuteration: C-13-MMTS-labeled NADPH-cytochrome P450 oxidoreductase |
3 |
| Artifacts can emerge in spectra recorded with even the simplest of pulse schemes: an HMQC case study |
3 |
| Isotope labeling for studying RNA by solid-state NMR spectroscopy |
3 |
| Solution structure of the N-terminal domain of the Staphylococcus aureus hibernation promoting factor |
3 |
| MAS dependent sensitivity of different isotopomers in selectively methyl protonated protein samples in solid state NMR |
3 |
| Assigning NMR spectra of RNA, peptides and small organic molecules using molecular network visualization software |
3 |