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Ab initio:
GeNMR
Cyana
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Fragment-based:
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Template-based:
GeNMR
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Structure from chemical shifts:
Fragment-based:
WeNMR CS-Rosetta
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Torsion angles from chemical shifts:
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Secondary structure from chemical shifts:
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Flexibility from chemical shifts:
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Chemical shifts re-referencing:
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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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Proshift
PPM
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From sequence:
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Disordered proteins:
MAXOCC
Format conversion & validation:
CCPN
From NMR-STAR 3.1
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NMR sample preparation:
Protein disorder:
DisMeta
Protein solubility:
camLILA
ccSOL
Camfold
camGroEL
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Isotope labeling:
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Solid-state NMR:
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Default Solid-State NMR for Studying the Structure and Dynamics of Viral Assemblies.

Solid-State NMR for Studying the Structure and Dynamics of Viral Assemblies.

Solid-State NMR for Studying the Structure and Dynamics of Viral Assemblies.

Viruses. 2020 Sep 24;12(10):

Authors: Lecoq L, Fogeron ML, Meier BH, Nassal M, Böckmann A

Abstract
Structural virology reveals the architecture underlying infection. While notably electron microscopy images have provided an atomic view on viruses which profoundly changed our understanding of these assemblies incapable of independent life, spectroscopic techniques like NMR enter the field with their strengths in detailed conformational analysis and investigation of dynamic behavior. Typically, the large assemblies represented by viral particles fall in the regime of biological high-resolution solid-state NMR, able to follow with high sensitivity the path of the viral proteins through their interactions and maturation steps during the viral life cycle. We here trace the way from first solid-state NMR investigations to the state-of-the-art approaches currently developing, including applications focused on HIV, HBV, HCV and influenza, and an outlook to the possibilities opening in the coming years.


PMID: 32987909 [PubMed - in process]



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