Pages that link to "Q46107962"
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The following pages link to Backbone assignments in solid-state proteins using J-based 3D heteronuclear correlation spectroscopy (Q46107962):
Displaying 24 items.
- Probing structure and dynamics of protein assemblies by magic angle spinning NMR spectroscopy (Q26864633) (← links)
- Membrane protein structure from rotational diffusion (Q30361533) (← links)
- A Monte Carlo/simulated annealing algorithm for sequential resonance assignment in solid state NMR of uniformly labeled proteins with magic-angle spinning (Q33987174) (← links)
- Spin diffusion driven by R-symmetry sequences: applications to homonuclear correlation spectroscopy in MAS NMR of biological and organic solids (Q35142447) (← links)
- On the problem of resonance assignments in solid state NMR of uniformly ¹⁵N,¹³C-labeled proteins (Q35210692) (← links)
- Characterization of noninnocent metal complexes using solid-state NMR spectroscopy: o-dioxolene vanadium complexes (Q36067751) (← links)
- Resonance Assignments and Secondary Structure Analysis of Dynein Light Chain 8 by Magic Angle Spinning NMR Spectroscopy (Q36464900) (← links)
- Solid-state NMR spectroscopy of protein complexes (Q36961610) (← links)
- Broadband homonuclear correlation spectroscopy driven by combined R2(n)(v) sequences under fast magic angle spinning for NMR structural analysis of organic and biological solids. (Q36989100) (← links)
- Dynamics of reassembled thioredoxin studied by magic angle spinning NMR: snapshots from different time scales (Q37701214) (← links)
- Long-observation-window band-selective homonuclear decoupling: increased sensitivity and resolution in solid-state NMR spectroscopy of proteins (Q39503736) (← links)
- Evolution of solid-state NMR in pharmaceutical analysis (Q39769314) (← links)
- Constant-time 2D and 3D through-bond correlation NMR spectroscopy of solids under 60 kHz MAS. (Q41769447) (← links)
- Symmetry-amplified J splittings for quadrupolar spin pairs: a solid-state NMR probe of homoatomic covalent bonds (Q41908613) (← links)
- J-Based 3D sidechain correlation in solid-state proteins. (Q42946996) (← links)
- Bidirectional band-selective magnetization transfer along the protein backbone doubles the information content of solid-state NMR correlation experiments. (Q47369366) (← links)
- Protein resonance assignment at MAS frequencies approaching 100 kHz: a quantitative comparison of J-coupling and dipolar-coupling-based transfer methods. (Q50946604) (← links)
- Hydrogen bonding involving side chain exchangeable groups stabilizes amyloid quarternary structure. (Q50951734) (← links)
- Narrow carbonyl resonances in proton-diluted proteins facilitate NMR assignments in the solid-state. (Q52904963) (← links)
- Resolution enhancement by homonuclear J-decoupling: application to three-dimensional solid-state magic angle spinning NMR spectroscopy (Q57098184) (← links)
- High-resolution and sensitivity through-bond correlations in ultra-fast magic angle spinning (MAS) solid-state NMR (Q57877547) (← links)
- SSNMR of biosilica-entrapped enzymes permits an easy assessment of preservation of native conformation in atomic detail (Q58619042) (← links)
- Chemical shift correlation at high MAS frequencies employing low-power symmetry-based mixing schemes (Q84364422) (← links)
- High resolution methyl selective ¹³C-NMR of proteins in solution and solid state (Q84561485) (← links)