Peroxidase Activity of a c‐Type Cytochrome b 5 in the Non‐Native State is Comparable to that of Native Peroxidases
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Summary
Stopped‐flow kinetic studies revealed that c‐type Cyt’b 5 in the non‐native state exhibited impressive peroxidase activity comparable to that of nativePeroxidases, such as the most efficient horseradish peroxIDase.
- Type
- article
- Published
- 2017-05-02
- Cited by
- 8
- References
- 50
- Access
- Open access
- OpenAlex
- https://openalex.org/W2611670410
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:6859137
Keywords
Peroxidase, Heme, Guanidine, Chemistry, Native state
References
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- Engineering a Hydrophilic Heme Catalytic Pocket into Microsomal Cytochrome b5: Construction of Novel Metalloproteins with High Peroxidase-like Activity
- Role of tyrosine-103 in myoglobin peroxidase activity: kinetic and steady-state studies on the reaction of wild-type and variant recombinant human myoglobins with H(2)O(2).
- Oxidation of Guaiacol by Lignin Peroxidase
- Artificial enzymes with protein scaffolds: structural design and modification.
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- Molecular modeling of cytochrome b5 with a single cytochrome c-like thioether linkage
- New functionalization of myoglobin by chemical modification of heme-propionates.
- Rational molecular design of a catalytic site: engineering of catalytic functions to the myoglobin active site framework
- Recent achievments in the design and engineering of artificial metalloenzymes.
- Structure and function of heme proteins in non-native states: a mini-review.
- Interfacial metal coordination in engineered protein and peptide assemblies.
- Designing Artificial Enzymes by Intuition and Computation
Cited by
- Rational design of artificial dye-decolorizing peroxidases using myoglobin by engineering Tyr/Trp in the heme center.
- Peroxidase-like activity of cytochrome b5 is triggered upon hemichrome formation in alkaline pH.
- Enhancement of protein stability by an additional disulfide bond designed in human neuroglobin
- Uranyl Binding to Proteins and Structural-Functional Impacts
- Biodegradation of aromatic pollutants by metalloenzymes: A structural-functional-environmental perspective
- Comparative studies of soluble and immobilized Fe(III) heme-peptide complexes as alternative heterogeneous biocatalysts
- Peroxidase activity of rice (Oryza sativa) hemoglobin: distinct role of tyrosines 112 and 151
- Functional metalloenzymes based on myoglobin and neuroglobin that exploit covalent interactions.
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