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Drug metabolic enzymes in developmental toxicology
M S Miller1, M R Juchau, F P Guengerich
1Department of Cancer Biology, Comprehensive Cancer Center of Wake Forest University, Winston-Salem, North Carolina, 27157, USA.
Abstract:
Although much is known about the metabolism of environmental toxicants in adult organisms, little information exists on the role of cytochrome P450 (CYP) enzymes during development. The developing organism is remarkably dynamic, presenting a constantly changing metabolic profile as various enzyme systems are activated or repressed. This may explain the markedly different sensitivities to various toxicants that are exhibited throughout the developmental period. The application of molecular biological methods has provided important information on the roles of these enzymes in modulating the response of the developing organism to toxicological exposures. The first talk will focus on the identification and role of CYPs during early organogenesis, particularly on how these enzymes influence the response of the conceptus and early embryo to toxic chemicals. The second presentation will discuss the identification of CYPs expressed during human development, as many of the enzymes present in adults are not expressed in the fetus. The third speaker will discuss the developmental consequences of loss of expression of particular metabolic enzymes, focusing on recent studies employing knockout mice to examine the role of drug metabolic enzymes during development. The last two talks will discuss some of the short- and long-term consequences of in utero exposures to toxic chemicals and the role of CYP in modulating the toxic response of the developing organism. The first of these will focus on the role of CYP2E1 in human fetuses during late gestation and the response of this enzyme to inducing agents such as alcohol. The last talk will discuss the role of CYP1A1 in the activation of the Ki-ras oncogene following in utero exposure to carcinogens as a mechanism for lung tumor formation in a pharmacogenetic mouse model.
Insights
Cytochrome P450 (CYP) enzymes play a critical role in how developing organisms respond to environmental toxicants. Understanding their function during development is crucial for assessing toxicological risks.
Area of Science:
- Developmental toxicology
- Enzyme kinetics
- Molecular biology
Background:
- Limited knowledge exists on cytochrome P450 (CYP) enzyme activity during organism development.
- Metabolic profiles change dynamically during development, influencing toxicant sensitivity.
- Molecular biology tools are vital for understanding developmental toxicological responses.
Purpose of the Study:
- To investigate the role of CYP enzymes in early organogenesis and embryonic response to toxicants.
- To identify CYPs expressed during human development and compare them to adult profiles.
- To examine developmental consequences of metabolic enzyme loss using knockout models.
- To explore short- and long-term effects of in utero toxicant exposure and CYP modulation.
Main Methods:
- Molecular biological methods for CYP identification and role elucidation.
- Comparative analysis of CYP expression in fetal versus adult humans.
- Utilizing knockout mouse models to study metabolic enzyme function during development.
- Investigating specific CYP enzymes (CYP2E1, CYP1A1) in fetal exposure models.
Main Results:
- CYPs influence the response of the conceptus and early embryo to toxic chemicals.
- Distinct CYP profiles exist during human development compared to adults.
- Loss of metabolic enzyme expression has significant developmental consequences.
- In utero exposure to toxicants has short- and long-term effects modulated by CYPs.
Conclusions:
- CYP enzymes are critical modulators of toxicant metabolism and response throughout development.
- Developmental stage significantly impacts an organism's sensitivity to environmental toxicants.
- Further research into developmental CYP function is essential for risk assessment and intervention.