Changes in the expression of cytochrome P450 isozymes and related carcinogen metabolizing enzyme activities inSchistosoma mansoni-infected mice

Author:

Sheweita S.A.,Mubark J.,Doenhoff M.J.,Mostafa M.H.,Margison G.P.,O'Connor P.J.,Elder R.H.

Abstract

AbstractMixed-function oxidase enzymes metabolize most xenobiotic agents. Western blotting was used to investigate the effect ofSchistosoma mansoniinfection on the expression of various cytochrome P450 (CYP) isozymes and specific enzyme assays to study related metabolic functions in mouse liver microsomes. Male BK-TO mice were infected with 200 cercariae per mouse and their livers were assayed at 6, 15, 30 and 45 days post-infection (p.i.) and compared with appropriately matched controls. The expression of each of the CYP isozymes (1A1, 2B1/2, 2C6, and 4A) was either unaffected or transiently increased up to 30 days post-infection. By 45 days, a significant loss of signal was observed, particularly for CYP 1A1 and 2B1/2 where no signal could be detected. Evidence supporting these findings was obtained from enzyme assays specific for particular CYP isozymes. The activity of ethoxyresorufinO-deethylase (CYP 1A1) was reduced by 97% and that of pentoxyresorufinO-depentylase (CYP 2B1/2) by 96% at 45 days p.i. Similarly, the activity of ethoxycoumarin hydroxylase was progressively reduced over the period under study. It is believed thatN-nitrosamines are activated principally byN-nitrosodimethylamineN-demethylase I which was significantly increased at both 30 and 45 days p.i. To further investigate metabolic competency followingS. mansoniinfection, thein vitrobinding of benzo(a)pyrene metabolites to DNA was measured, using isolated liver microsomes to activate benzo(a)pyrene. Benzo(a)pyrene-DNA adduct formation was markedly increased at 6, 15 and 30 days with a maximum at 15 days, but decreased at 45 days p.i. It was concluded thatS. mansoniinfection changes the expression of different CYP isozymes and also the activity of phase I drug-metabolizing enzymes at different periods of infection and may thus change the liver's capacity to activate or detoxify many endogenous and exogenous compounds. Such alterations may also change the therapeutic actions of drugs that are primarily metabolized by the P450 system, when administered to patients with schistosomiasis.

Publisher

Cambridge University Press (CUP)

Subject

Animal Science and Zoology,General Medicine,Parasitology

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