Many reduced cupredoxins undergo a pH-dependent structural rearrangement, triggered by protonation of the His ligand belonging to the C-terminal hydrophobic loop, usually termed the acid transition. At variance with several members of the cupredoxin family, the acid transition is not observed for azurin (AZ). We have addressed this issue by performing molecular dynamics simulations of AZ and four mutants, in which the C-terminal loop has been replaced with those of other cupredoxins or with polyalanine loops. All of the loop mutants undergo the acid transition in the pH range of 4.4-5.5. The main differences between AZ and its loop mutants are the average value of the active site solvent accessible surface area and the extent of its fluctua...
Azurin belongs to a family of small blue copper proteins or cupredoxins which participate in electro...
The structural basis of the low reorganization energy of cupredoxins has long been debated. These pr...
Cupredoxins arc electron transfer (ET) proteins which possess type I (Tl) copper sites. A TI copper ...
Many reduced cupredoxins undergo a pH-dependent structural rearrangement, triggered by protonation o...
Many reduced cupredoxins undergo a pH-dependent structural rearrangement, triggered by protonation o...
Many reduced cupredoxins undergo a pH-dependent structural rearrangement, triggered by protonation o...
Understanding the factors governing the rate of electron transfer processes in proteins is crucial n...
The wide range of variability of the reduction potential (E(0)) of blue-copper proteins has been the...
The type 1 copper site of a cupredoxin involves coordination by cysteine, histidine, and methionine ...
The structural basis of the low reorganization energy of cupredoxins has long been debated. These pr...
We used direct electrochemistry and MD simulations to investigate the redox reactivity of native azu...
The thermodynamics of reduction and His ligand protonation have been determined for a range of loopc...
Understanding the factors governing the rate of electron transfer processes in proteins is crucial n...
Atomic resolution structures of the pseudoazurin (PAZ) variant into which the shorter ligand-contain...
Metalloproteins play important roles in biological systems since metal-binding sites are found in ~ ...
Azurin belongs to a family of small blue copper proteins or cupredoxins which participate in electro...
The structural basis of the low reorganization energy of cupredoxins has long been debated. These pr...
Cupredoxins arc electron transfer (ET) proteins which possess type I (Tl) copper sites. A TI copper ...
Many reduced cupredoxins undergo a pH-dependent structural rearrangement, triggered by protonation o...
Many reduced cupredoxins undergo a pH-dependent structural rearrangement, triggered by protonation o...
Many reduced cupredoxins undergo a pH-dependent structural rearrangement, triggered by protonation o...
Understanding the factors governing the rate of electron transfer processes in proteins is crucial n...
The wide range of variability of the reduction potential (E(0)) of blue-copper proteins has been the...
The type 1 copper site of a cupredoxin involves coordination by cysteine, histidine, and methionine ...
The structural basis of the low reorganization energy of cupredoxins has long been debated. These pr...
We used direct electrochemistry and MD simulations to investigate the redox reactivity of native azu...
The thermodynamics of reduction and His ligand protonation have been determined for a range of loopc...
Understanding the factors governing the rate of electron transfer processes in proteins is crucial n...
Atomic resolution structures of the pseudoazurin (PAZ) variant into which the shorter ligand-contain...
Metalloproteins play important roles in biological systems since metal-binding sites are found in ~ ...
Azurin belongs to a family of small blue copper proteins or cupredoxins which participate in electro...
The structural basis of the low reorganization energy of cupredoxins has long been debated. These pr...
Cupredoxins arc electron transfer (ET) proteins which possess type I (Tl) copper sites. A TI copper ...