Probing the role of the proximal heme ligand in cytochrome P450cam by recombinant incorporation of selenocysteine.
basic_science · Level V
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- Record sourced from PubMed, PMID 19293375.
- Also identified by DOI 10.1073/pnas.0810503106 and PMC identifier 2657087.
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Abstract
The unique monooxygenase activity of cytochrome P450cam has been attributed to coordination of a cysteine thiolate to the heme cofactor. To investigate this interaction, we replaced cysteine with the more electron-donating selenocysteine. Good yields of the selenoenzyme were obtained by bacterial expression of an engineered gene containing the requisite UGA codon for selenocysteine and a simplified yet functional selenocysteine insertion sequence (SECIS). The sulfur-to-selenium substitution subtly modulates the structural, electronic, and catalytic properties of the enzyme. Catalytic activity decreases only 2-fold, whereas substrate oxidation becomes partially uncoupled from electron transfer, implying a more complex role for the axial ligand than generally assumed.
Medical subject headings
- Camphor 5-Monooxygenase
- Molecular Probe Techniques
- Protein Engineering
- Selenocysteine