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Cu
A
centers and their biosynthetic models in azurin
Masha G. Savelieff,
Yi Lu
Chemistry
Materials Research Lab
Carl R. Woese Institute for Genomic Biology
Bioengineering
Beckman Institute for Advanced Science and Technology
Materials Science and Engineering
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A
centers and their biosynthetic models in azurin'. Together they form a unique fingerprint.
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Keyphrases
Azurin
100%
CuA Center
100%
Cu(I)
66%
Native Protein
66%
Copper Ions
66%
Cysteine
33%
Copper Centers
33%
Mixed Valence
33%
Electron Transfer
33%
Unpaired Electrons
33%
High Efficiency
33%
Electron Transfer Properties
33%
Synthetic Model
33%
Spectroscopic Properties
33%
Efficient Electron Transfer
33%
Transfer Agent
33%
Diamond Core
33%
Thiolate Ligands
33%
Soluble Protein
33%
Chalcocite
33%
Binuclear Copper
33%
2-structure
33%
Organic Molecules
33%
Protein System
33%
Biochemistry, Genetics and Molecular Biology
Electron Transport
100%
Azurin
100%
Copper Ion
100%
Cysteine
50%
Thiolates
50%
Soluble Protein
50%
Chemistry
Electron Transport
100%
Electron Transfer
100%
Cysteine
50%
Mixed Valence
50%
Organic Molecule
50%