By C.C. Reddy (Eds.)

The 1st of 2 volumes featuring present examine into oxidation platforms, this ebook is meant for biochemists, toxicologists, and pharmacologists. subject matters mentioned comprise the mechanisms of organic oxidations, and peroxidases in telephone safety and metabolism

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Additional resources for Biological Oxidation Systems. Volume 1

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Muramatsu, M. and 10. , (Tokyo) 9 3 , 8 0 7 - 1 7 Fujii-Kuriyama, Y . (1984) Proc. Natl. Acad. Sci. USA. R, Sato, R. R. (1987) DNA 6 , 1 - 1 1 11. , Johnson, E . F . , Sato, R. R. (1989) DNA 8 , 1 - 1 3 Pharm Ther. 4 5 , 1 - 3 8 12. J. (1990) 13. C. and Kraut, J . (1985) / . Biol. Chem 2 6 0 , 1 6 1 2 2 - 3 0 Mol. Biol. 1 9 5 , 6 8 7 - 7 0 0 14. C. J. (1987) /. 15. , Simpson, E . R . R. (1986) Science 2 3 4 , 16. , Buczko, E . L. (1988) Biochem 1258-61 Biophys. Res. Commun. 1 5 , 1 5 7 17. , McCarthy, J .

Kimura and Nebert ( 8 7 ) found that the natural mouse P - 4 5 0 I A 2 variant P 2 450, deficient in acetanilide 4-hydroxylase activity ( 8 8 ) , differed only in the substitution I384M. Kimura et al ( 8 9 ) also reported that loss of the benzoffljpyrene hydroxylase activity in a Hepa-1 cell P - 4 5 0 IA1 mutant is the result of the double mutation L 1 1 8 R / R 2 4 5 P , and neither mutation alone is sufficient to eliminate the activity. Ishida et al ( 9 0 ) analyzed a yeast mutant deficient in lanosterol 1 4 a demethylase activity ( P - 4 5 0 L I ) and found that the loss of activity was due to the mutation G 3 1 0 D , which on the basis of the threedimensional structure of bacterial P - 4 5 0 c am is expected to be near the distal ligand of the heme.

T h e P-450s are remarkable hemoproteins. The P-450 Superfamily 37 Acknowledgements Supported in part by grants from the NIH, U S P H S ( G M 1 6 4 8 8 , GM19036, G M 3 7 9 4 2 , A G 0 8 1 7 5 , H D 1 3 2 3 4 and D K 2 8 3 5 0 ) . References 1. C. and Vanneste, M. (1965) Fed. Proc. 2 4 , 1 1 7 2 - 8 0 2. , Tagashira, Y . , Muramatsu, M. and 3. C. and Kraut, J . (1985) / . Fujii-Kuriyama, Y . ( 1 9 8 3 ) / . Biochem. (Tokyo) 9 4 , 1 4 6 5 - 7 3 Biol. Chem 2 6 0 , 1 6 1 2 2 - 3 0 Biol. Chem 2 3 9 , 2 3 7 0 - 2 3 7 8 4.

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