Title : Characterization of three highly purified cytochromes P-450 from hepatic microsomes of adult male rats.

Pub. Date : 1984 Jan 25

PMID : 6420404






8 Functional Relationships(s)
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Sentence
Compound Name
Protein Name
Organism
1 Cytochrome P-450h is a versatile catalyst exhibiting high activity toward benzphetamine, hexobarbital, and estradiol-17 beta and moderate activity toward benzo[alpha]pyrene and zoxazolamine. Benzphetamine cytochrome P450, subfamily 2, polypeptide 11 Rattus norvegicus
2 Cytochrome P-450h is a versatile catalyst exhibiting high activity toward benzphetamine, hexobarbital, and estradiol-17 beta and moderate activity toward benzo[alpha]pyrene and zoxazolamine. Hexobarbital cytochrome P450, subfamily 2, polypeptide 11 Rattus norvegicus
3 Cytochrome P-450h is a versatile catalyst exhibiting high activity toward benzphetamine, hexobarbital, and estradiol-17 beta and moderate activity toward benzo[alpha]pyrene and zoxazolamine. Estradiol cytochrome P450, subfamily 2, polypeptide 11 Rattus norvegicus
4 Cytochrome P-450h is a versatile catalyst exhibiting high activity toward benzphetamine, hexobarbital, and estradiol-17 beta and moderate activity toward benzo[alpha]pyrene and zoxazolamine. Benzo[alpha]pyrene cytochrome P450, subfamily 2, polypeptide 11 Rattus norvegicus
5 Cytochrome P-450h is a versatile catalyst exhibiting high activity toward benzphetamine, hexobarbital, and estradiol-17 beta and moderate activity toward benzo[alpha]pyrene and zoxazolamine. Zoxazolamine cytochrome P450, subfamily 2, polypeptide 11 Rattus norvegicus
6 Both cytochromes P-450f and P-450h catalyze the hydroxylation of testosterone at the 16 alpha-position; however, cytochrome P-450h also oxidizes the steroid at the 2 alpha- and 17 beta-position (androstenedione formation). Testosterone cytochrome P450, subfamily 2, polypeptide 11 Rattus norvegicus
7 Both cytochromes P-450f and P-450h catalyze the hydroxylation of testosterone at the 16 alpha-position; however, cytochrome P-450h also oxidizes the steroid at the 2 alpha- and 17 beta-position (androstenedione formation). Steroids cytochrome P450, subfamily 2, polypeptide 11 Rattus norvegicus
8 Both cytochromes P-450f and P-450h catalyze the hydroxylation of testosterone at the 16 alpha-position; however, cytochrome P-450h also oxidizes the steroid at the 2 alpha- and 17 beta-position (androstenedione formation). Androstenedione cytochrome P450, subfamily 2, polypeptide 11 Rattus norvegicus