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NMR processing:
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Side-chains:
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Structure from NMR restraints:
Ab initio:
GeNMR
Cyana
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Fragment-based:
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Template-based:
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Refinement:
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Structure from chemical shifts:
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Torsion angles from chemical shifts:
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Secondary structure from chemical shifts:
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Chemical shifts re-referencing:
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NMR spectrum prediction:
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Flexibility from structure:
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Molecular dynamics:
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Chemical shifts prediction:
From structure:
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From sequence:
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Disordered proteins:
MAXOCC
Format conversion & validation:
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From NMR-STAR 3.1
Validate NMR-STAR 3.1
NMR sample preparation:
Protein disorder:
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Protein solubility:
camLILA
ccSOL
Camfold
camGroEL
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Isotope labeling:
UPLABEL
Solid-state NMR:
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Default Protein-Ligand Binding Volume Determined from a Single 2D NMR Spectrum with Increasing Pressure

Protein-Ligand Binding Volume Determined from a Single 2D NMR Spectrum with Increasing Pressure

Proteins undergo changes in their partial volumes in numerous biological processes such as enzymatic catalysis, unfolding-refolding, and ligand binding. The change in the protein volume upon ligand binding-a parameter termed the protein-ligand binding volume-can be extensively studied by high-pressure NMR spectroscopy. In this study, we developed a method to determine the protein-ligand binding volume from a single two-dimensional (2D) ąH-^(15)N heteronuclear single quantum coherence (HSQC)...

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