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Side-chains:
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Structure from NMR restraints:
Ab initio:
GeNMR
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Fragment-based:
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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:
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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 prediction:
From structure:
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From sequence:
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Camcoil
Poulsen_rc_CS
Disordered proteins:
MAXOCC
Format conversion & validation:
CCPN
From NMR-STAR 3.1
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NMR sample preparation:
Protein disorder:
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Protein solubility:
camLILA
ccSOL
Camfold
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Old 11-18-2010, 08:31 PM
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Default Studies on solution NMR structure of brazzein : Secondary structure and molecular sca

Studies on solution NMR structure of brazzein : Secondary structure and molecular scaffold.

Related Articles Studies on solution NMR structure of brazzein : Secondary structure and molecular scaffold.

Sci China C Life Sci. 1999 Aug;42(4):409-19

Authors: Gao G, Dai J, Ding M, Hellekant G, Wang J, Wang D

Brazzein is a sweet-tasting protein isolated from the fruit of West African plantPentadiplandra brazzeana Baillon. It is the smallest and the most water-soluble sweet protein discovered so far and is highly thermostable. The proton NMR study of brazzein at 600 MHz (pH 3.5, 300 K) is presented. The complete sequence specific assignments of the individual backbone and sidechain proton resonances were achieved using through-bond and through-space connectivities obtained from standard two-dimensional NMR techniques. The secondary structure of brazzein contains one alpha-helix (residues 21-29), one short 3(10)-helix (residues 14-17), two strands of antiparallel beta-sheet (residues 34-39, 44-50) and probably a third strand (residues 5-7) near the N-terminus. A comparative analysis found that brazzein shares a so-called 'cysteine-stabilized alpha-beta' (CSalphabeta) motif with scorpion neurotoxins, insect defensins and plant gamma - thionins. The significance of this multi-function motif, the possible active sites and the structural basis of themostability were discussed.

PMID: 18763132 [PubMed - in process]



Source: PubMed
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