The electronic spectrum of the azurin Met121Gln mutant, a model of the blue copper protein stellacyanin, has been studied by ab initio multiconfigurational second-order perturbation theory (the CASPT2 method), including the effect of the protein and solvent by point charges. The six lowest electronic transitions have been calculated and assigned with an error of less than 2400 cm-1. The ground-state singly occupied orbital is found to be a predominantly π antibonding orbital involving Cu3d and Scys3pπ. However, it also contains a significant amount (18%) of Cu-Scys σ antibonding character. This σ interaction is responsible for the appearance in the absorption spectrum of a band at 460 nm, with a significantly higher intensity than observed ...
The charge transfer of azurin and plastocyanin are analyzed in detail. The number and relative energ...
The copper–sulfur bond that binds cysteinate to the metal center is a key factor in the spectroscopy...
Cofactors extend the chemistry of life. Redox reactions in photosynthesis, nitrogen fixation, and ot...
Detailed electronic and geometric structural descriptions of the blue copper sites in wild-type (WT)...
The electronic spectra of three rhombic type 1 blue copper proteins, nitrite reductase, pseudoazurin...
The electronic spectrum of the blue copper protein plastocyanin has been studied by ab initio multic...
Complete assignments of the electronic spectra of stellacyanin, plastocyanin, and azurin have been m...
It has been observed in azurin [1], plastocyanin, and stellacyanin (unpublished work) that a redox p...
The calculation of the electronic circular dichroism (CD) spectra of the oxidised form of the blue c...
Stellacyanin is a mucoprotein of molecular weight approximately 20,000 containing one copper atom in...
Low temperature absorption, circular dichroism, and magnetic circular dichroism spectral studies of ...
Theoretical investigations of the structure and function of the blue copper proteins and the dimeric...
The calculation of the electronic circular dichroism (CD) spectra of the oxidized form of the blue c...
The copper coordination geometry in the blue copper proteins plastocyanin, nitrite reductase, cucumb...
The reduction potentials of blue copper sites vary between 180 and about 1000 mV. It has been sugges...
The charge transfer of azurin and plastocyanin are analyzed in detail. The number and relative energ...
The copper–sulfur bond that binds cysteinate to the metal center is a key factor in the spectroscopy...
Cofactors extend the chemistry of life. Redox reactions in photosynthesis, nitrogen fixation, and ot...
Detailed electronic and geometric structural descriptions of the blue copper sites in wild-type (WT)...
The electronic spectra of three rhombic type 1 blue copper proteins, nitrite reductase, pseudoazurin...
The electronic spectrum of the blue copper protein plastocyanin has been studied by ab initio multic...
Complete assignments of the electronic spectra of stellacyanin, plastocyanin, and azurin have been m...
It has been observed in azurin [1], plastocyanin, and stellacyanin (unpublished work) that a redox p...
The calculation of the electronic circular dichroism (CD) spectra of the oxidised form of the blue c...
Stellacyanin is a mucoprotein of molecular weight approximately 20,000 containing one copper atom in...
Low temperature absorption, circular dichroism, and magnetic circular dichroism spectral studies of ...
Theoretical investigations of the structure and function of the blue copper proteins and the dimeric...
The calculation of the electronic circular dichroism (CD) spectra of the oxidized form of the blue c...
The copper coordination geometry in the blue copper proteins plastocyanin, nitrite reductase, cucumb...
The reduction potentials of blue copper sites vary between 180 and about 1000 mV. It has been sugges...
The charge transfer of azurin and plastocyanin are analyzed in detail. The number and relative energ...
The copper–sulfur bond that binds cysteinate to the metal center is a key factor in the spectroscopy...
Cofactors extend the chemistry of life. Redox reactions in photosynthesis, nitrogen fixation, and ot...