A Soluble Cytochrome P-450 Functional in Methylene Hydroxylation

1. A methylene hydroxylase system from camphor induced Pseudomonas putida strain C1 cells has been separated into three fractions: a putidaredoxin reductase, putidaredoxin (an iron-sulfur protein), and a hydroxylase (shown to be a soluble cytochrome P-450). 2. This system of enzymes catalyzes the hy...

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Veröffentlicht in:The Journal of biological chemistry 1968-06, Vol.243 (12), p.3543-3546
Hauptverfasser: Katagiri, M, Ganguli, B N, Gunsalus, I C
Format: Artikel
Sprache:eng
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Zusammenfassung:1. A methylene hydroxylase system from camphor induced Pseudomonas putida strain C1 cells has been separated into three fractions: a putidaredoxin reductase, putidaredoxin (an iron-sulfur protein), and a hydroxylase (shown to be a soluble cytochrome P-450). 2. This system of enzymes catalyzes the hydroxylation of methylene carbon 5 of camphor with reduced disphosphopyridine nucleotide as a primary electron donor and molecular oxygen as acceptor. 3. The redoxin serves as the electron carrier from the reduced pyridine nucleotide and reductase to the cytochrome P-450-substrate complex. 4. The coupling of the hydroxylase (P-450) to the reduced diphosphopyridine nucleotide dehydrogenase (reductase), and the putidaredoxin is demonstrated, and substrate is shown to be required for the over-all reaction.
ISSN:0021-9258
1083-351X
DOI:10.1016/S0021-9258(18)93343-0