The long term objective of this proposal is to study the structure, function and regulation of insect cytochrome P450 genes and proteins. P450 monooxygenases are involved in the metabolism of endogenous substrates. P450 enzymes also serve to detoxify foreign chemicals of natural or synthetic origin. In the latter case, overexpression of P450 genes can lead to insecticide resistance. Moreover, the induction of P450 enzymes by phenobarbital and by many other types of chemicals in insects may provide a useful model for similar induction in vertebrates. The following specific aims will be addressed: 1. To clone and sequence the genes and reconstitute activity of the P450 proteins responsible for essential physiological functions. 2. To study the role of cytochrome b5 and the stoichiometry of P450 reactions in reconstituted systems. A house fly cytochrome b5 cDNA will be expressed in E.coli and the purified protein used in reconstitution studies with house fly P450 and NADPH cyt P450 reductase that have been expressed and purified. The coupling of insect P450 reactions will be studied. NADPH consumption and oxygen consumption will be measured in conjunction with the conversion of substrate to product and the generation of superoxide and hydrogen peroxide. 3. To study the mechanism of induction of P450 genes by phenobarbital using Drosophila as model. Transient expression of reporter genes in transfected Drosophila cells under the control of the 5' flanking region of the phenobarbital-inducible CYP6A2 gene will be studied. P-element vectors carrying the 5' flanking region of the CYP6A2 gene and a reporter gene will be used to transform Drosophila. Transgenic flies will be characterized with respect to their response to phenobarbital treatment in vivo. EMS mutants with altered phenobarbital induction phenotype will be generated and characterized. These studies should provide a useful model for the mode of action of this class of P450 inducers.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM039014-13
Application #
2734586
Study Section
Special Emphasis Panel (ZRG5-TMP (01))
Project Start
1991-01-01
Project End
1999-06-30
Budget Start
1998-07-01
Budget End
1999-06-30
Support Year
13
Fiscal Year
1998
Total Cost
Indirect Cost
Name
University of Arizona
Department
Zoology
Type
Schools of Earth Sciences/Natur
DUNS #
City
Tucson
State
AZ
Country
United States
Zip Code
85721
Giraudo, Maeva; Unnithan, G Chandran; Le Goff, Gaƫlle et al. (2010) Regulation of cytochrome P450 expression in Drosophila: Genomic insights. Pestic Biochem Physiol 97:115-122
Murataliev, Marat B; Guzov, Victor M; Walker, F Ann et al. (2008) P450 reductase and cytochrome b5 interactions with cytochrome P450: effects on house fly CYP6A1 catalysis. Insect Biochem Mol Biol 38:1008-15
Jacobsen, Neil E; Kover, Katalin E; Murataliev, Marat B et al. (2006) Structure and stereochemistry of products of hydroxylation of human steroid hormones by a housefly cytochrome P450 (CYP6A1). Magn Reson Chem 44:467-74
Helvig, Christian; Tijet, Nathalie; Feyereisen, Rene et al. (2004) Drosophila melanogaster CYP6A8, an insect P450 that catalyzes lauric acid (omega-1)-hydroxylation. Biochem Biophys Res Commun 325:1495-502
Murataliev, Marat B; Trinh, Long N; Moser, Lani V et al. (2004) Chimeragenesis of the fatty acid binding site of cytochrome P450BM3. Replacement of residues 73-84 with the homologous residues from the insect cytochrome P450 CYP4C7. Biochemistry 43:1771-80
Murataliev, Marat B; Feyereisen, Rene; Walker, F Ann (2004) Electron transfer by diflavin reductases. Biochim Biophys Acta 1698:1-26
Tijet, N; Helvig, C; Feyereisen, R (2001) The cytochrome P450 gene superfamily in Drosophila melanogaster: annotation, intron-exon organization and phylogeny. Gene 262:189-98
Sabourault, C; Guzov, V M; Koener, J F et al. (2001) Overproduction of a P450 that metabolizes diazinon is linked to a loss-of-function in the chromosome 2 ali-esterase (MdalphaE7) gene in resistant house flies. Insect Mol Biol 10:609-18
Murataliev, M B; Feyereisen, R (2000) Interaction of NADP(H) with oxidized and reduced P450 reductase during catalysis. Studies with nucleotide analogues. Biochemistry 39:5066-74
Paquette, S M; Bak, S; Feyereisen, R (2000) Intron-exon organization and phylogeny in a large superfamily, the paralogous cytochrome P450 genes of Arabidopsis thaliana. DNA Cell Biol 19:307-17

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