Design of a single protein that spans the entire 2-V range of physiological redox potentials
about
Modular Artificial CupredoxinsReversible S-nitrosylation in an engineered azurinA single protein redox rulerStopped-Flow Studies of the Reduction of the Copper Centers Suggest a Bifurcated Electron Transfer Pathway in Peptidylglycine Monooxygenase.Improving artificial metalloenzymes' activity by optimizing electron transfer.Crystal structure of linoleate 13R-manganese lipoxygenase in complex with an adhesion protein.Prediction of Reduction Potentials of Copper Proteins with Continuum Electrostatics and Density Functional Theory.Effect of circular permutation on the structure and function of type 1 blue copper center in azurin.Modular origins of biological electron transfer chains.Direct Measurement of Charge Regulation in Metalloprotein Electron Transfer.Extending the essential dynamics analysis to investigate molecular properties: application to the redox potential of proteins.Methodologies for wiring redox proteins/enzymes to electrode surfaces.Incorporation of redox-inactive cations promotes iron catalyzed aerobic C-H oxidation at mild potentials.
P2860
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P2860
Design of a single protein that spans the entire 2-V range of physiological redox potentials
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2015 nî lūn-bûn
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Design of a single protein tha ...... physiological redox potentials
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Design of a single protein tha ...... physiological redox potentials
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type
label
Design of a single protein tha ...... physiological redox potentials
@ast
Design of a single protein tha ...... physiological redox potentials
@en
prefLabel
Design of a single protein tha ...... physiological redox potentials
@ast
Design of a single protein tha ...... physiological redox potentials
@en
P2093
P2860
P50
P356
P1476
Design of a single protein tha ...... physiological redox potentials
@en
P2093
Mark J Nilges
Nicholas M Marshall
Ninian J Blackburn
Parisa Hosseinzadeh
Stoyan A Tashkov
P2860
P304
P356
10.1073/PNAS.1515897112
P407
P577
2015-12-02T00:00:00Z