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NOEs:
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Structure from NMR restraints:
Ab initio:
GeNMR
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UNIO ATNOS-Candid
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Fragment-based:
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Template-based:
GeNMR
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Refinement:
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Structure from chemical shifts:
Fragment-based:
WeNMR CS-Rosetta
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Homology-based:
CS23D
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Torsion angles from chemical shifts:
Preditor
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Secondary structure from chemical shifts:
CSI (via RCI server)
TALOS
MICS caps, β-turns
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Flexibility from chemical shifts:
RCI
Interactions from chemical shifts:
HADDOCK
Chemical shifts re-referencing:
Shiftcor
UNIO Shiftinspector
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NMR model quality:
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Chemical shifts:
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RDCs:
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Pseudocontact shifts:
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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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CH3shift- Methyl
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ShiftS
Proshift
PPM
CheShift-2- Cα
From sequence:
Shifty
Camcoil
Poulsen_rc_CS
Disordered proteins:
MAXOCC
Format conversion & validation:
CCPN
From NMR-STAR 3.1
Validate NMR-STAR 3.1
NMR sample preparation:
Protein disorder:
DisMeta
Protein solubility:
camLILA
ccSOL
Camfold
camGroEL
Zyggregator
Isotope labeling:
UPLABEL
Solid-state NMR:
sedNMR


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Old 05-06-2019, 03:07 AM
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Default Research: How good are protein disorder prediction programs actually? - Tdnews

Research: How good are protein disorder prediction programs actually? - Tdnews

Research: How good are protein disorder prediction programs actually? TdnewsDisorder in proteins is vital for biological function, and structural disorder in protein is more pervasive than you might think. Proteins with disordered regions may ...

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